2019 HRS/EHRA/APHRS/LAHRS expert consensus statement on catheter ablation of ventricular arrhythmias
Jazyk angličtina Země Spojené státy americké Médium print-electronic
Typ dokumentu časopisecké články, Research Support, N.I.H., Extramural, přehledy
Grantová podpora
R01 HL111314
NHLBI NIH HHS - United States
PubMed
31085023
PubMed Central
PMC8453449
DOI
10.1016/j.hrthm.2019.03.002
PII: S1547-5271(19)30210-3
Knihovny.cz E-zdroje
- Klíčová slova
- Catheter ablation, Clinical document, Electrical storm, Electroanatomical mapping, Electrocardiogram, Expert consensus statement, Imaging, Premature ventricular complex, Radiofrequency ablation, Ventricular arrhythmia, Ventricular tachycardia,
- MeSH
- kardiologie * MeSH
- katetrizační ablace normy MeSH
- komorová tachykardie chirurgie MeSH
- konsensus * MeSH
- lidé MeSH
- společnosti lékařské * MeSH
- Check Tag
- lidé MeSH
- Publikační typ
- časopisecké články MeSH
- přehledy MeSH
- Research Support, N.I.H., Extramural MeSH
Ventricular arrhythmias are an important cause of morbidity and mortality and come in a variety of forms, from single premature ventricular complexes to sustained ventricular tachycardia and fibrillation. Rapid developments have taken place over the past decade in our understanding of these arrhythmias and in our ability to diagnose and treat them. The field of catheter ablation has progressed with the development of new methods and tools, and with the publication of large clinical trials. Therefore, global cardiac electrophysiology professional societies undertook to outline recommendations and best practices for these procedures in a document that will update and replace the 2009 EHRA/HRS Expert Consensus on Catheter Ablation of Ventricular Arrhythmias. An expert writing group, after reviewing and discussing the literature, including a systematic review and meta-analysis published in conjunction with this document, and drawing on their own experience, drafted and voted on recommendations and summarized current knowledge and practice in the field. Each recommendation is presented in knowledge byte format and is accompanied by supportive text and references. Further sections provide a practical synopsis of the various techniques and of the specific ventricular arrhythmia sites and substrates encountered in the electrophysiology lab. The purpose of this document is to help electrophysiologists around the world to appropriately select patients for catheter ablation, to perform procedures in a safe and efficacious manner, and to provide follow-up and adjunctive care in order to obtain the best possible outcomes for patients with ventricular arrhythmias.
Australian National University Canberra Hospital Canberra Australia
Beth Israel Deaconess Medical Center Boston Massachusetts
Brigham and Women's Hospital Boston Massachusetts
CardioInfantil Foundation Cardiac Institute Bogota Columbia
Centro Privado de Cardiología Tucuman Argentina
Cleveland Clinic Cleveland Ohio
Duke University Medical Center Durham North Carolina
Hartford Hospital Hartford Connecticut
Heart Institute Teknon Medical Center Barcelona Spain
Herz und Gefäß Klinik Bad Neustadt Germany
Hospital Cardiologico SOS Cardio Florianopolis Brazil
Hospital General de Agudos Cosme Argerich Buenos Aires Argentina
Indiana University School of Medicine Krannert Institute of Cardiology Indianapolis Indiana
Institute for Clinical and Experimental Medicine Prague Czech Republic
Instituto Brasília de Arritmia Brasília Brazil
Jiangsu Province Hospital The 1st Affiliated Hospital of Nanjing Medical University Nanjing China
Kyorin University School of Medicine Tokyo Japan
Leiden University Medical Center Leiden the Netherlands
Northwestern University Feinberg School of Medicine Chicago Illinois
Ospedale San Raffaele Milan Italy
Queen Elizabeth 2 Health Sciences Centre Halifax Canada
Sree Chitra Institute for Medical Sciences and Technology Thiruvananthapuram India
University Hospital Antwerp University of Antwerp Antwerp Belgium
University Hospital Rangueil Toulouse France
University of Alabama at Birmingham Birmingham Alabama
University of California San Francisco Benioff Children's Hospital San Francisco California
University of Colorado Denver Aurora Colorado
University of Maryland Baltimore Maryland
University of Michigan Ann Arbor Michigan
University of Pennsylvania Philadelphia Pennsylvania
University of Queensland The Prince Charles Hospital Chermside Australia
University of Tsukuba Ibaraki Japan
Vanderbilt University Heart and Vascular Center Nashville Tennessee
Zobrazit více v PubMed
Aliot EM, Stevenson WG, Almendral-Garrote JM, et al.EHRA/HRS expert consensus on catheter ablation of ventricular arrhythmias: developed in a partnership with the European Heart Rhythm Association (EHRA), a registered branch of the European Society of Cardiology (ESC), and the Heart Rhythm Society (HRS); in collaboration with the American College of Cardiology (ACC) and the American Heart Association (AHA). Heart Rhythm 2009; 6:886–933. PubMed
Hosseini SM, Rozen G, Saleh A, et al.Catheter ablation for cardiac arrhythmias: utilization and in-hospital complications, 2000 to 2013. JACC Clin Electrophysiol 2017;3:1240–1248. PubMed
Raatikainen MJP, Arnar DO, Merkely B, Nielsen JC, Hindricks G, Heidbuchel H, Camm J. A decade of information on the use of cardiac implantable electronic devices and interventional electrophysiological procedures in the European Society of Cardiology Countries: 2017 report from the European Heart Rhythm Association. Europace 2017;19(Suppl. 2):ii1–ii90. PubMed
Al-Khatib SM, Stevenson WG, Ackerman MJ, et al.2017 AHA/ACC/HRS guideline for management of patients with ventricular arrhythmias and the prevention of sudden cardiac death: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society. Heart Rhythm 2018;15:e73–e189. PubMed
Priori SG, Blomström-Lundqvist C, Mazzanti A, et al.; Task Force for the Management of Patients with Ventricular Arrhythmias and the Prevention of Sudden Cardiac Death of the European Society of Cardiology (ESC). 2015 ESC guidelines for the management of patients with ventricular arrhythmias and the prevention of sudden cardiac death: the Task Force for the Management of Patients with Ventricular Arrhythmias and the Prevention of Sudden Cardiac Death of the European Society of Cardiology (ESC). Europace 2015;17:1601–1687. PubMed
Indik JH, Patton KK, Beardsall M, et al.HRS clinical document development methodology manual and policies: executive summary. Heart Rhythm 2017; 14:e495–e500. PubMed
Halperin JL, Levine GN, Al-Khatib SM, et al.Further evolution of the ACC/AHA clinical practice guideline recommendation classification system: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines. J Am Coll Cardiol 2016; 67:1572–1574. PubMed
Martinez BK, Baker WL, Konopka A, et al.Systematic review and meta-analysis of catheter ablation of ventricular tachycardia in ischemic heart disease. Heart Rhythm 2019May10 [Epub ahead of print]. PubMed
Couch OA Jr. Cardiac aneurysm with ventricular tachycardia and subsequent excision of aneurysm. Circulation 1959;20:251–253. PubMed
Mason JW, Stinson EB, Winkle RA, et al.Relative efficacy of blind left ventricular aneurysm resection for the treatment of recurrent ventricular tachycardia. Am J Cardiol 1982;49:241–248. PubMed
Guiraudon G, Fontaine G, Frank R, et al.Encircling endocardial ventriculotomy: a new surgical treatment for life-threatening ventricular tachycardias resistant to medical treatment following myocardial infarction. Ann Thorac Surg 1978;26:438–444. PubMed
Guiraudon G, Klein GJ, Gulamhusein S, et al.Total disconnection of the right ventricular free wall: surgical treatment of right ventricular tachycardia associated with right ventricular dysplasia. Circulation 1983; 67:463–470. PubMed
Josephson ME, Harken AH, Horowitz LN. Endocardial excision: a new surgical technique for the treatment of recurrent ventricular tachycardia. Circulation 1979;60:1430–1439. PubMed
Josephson ME, Horowitz LN, Farshidi A, Kastor JA. Recurrent sustained ventricular tachycardia. 1. Mechanisms. Circulation 1978;57:431–439. PubMed
Josephson ME, Horowitz LN, Farshidi A, Spear JF, Kastor JA, Moore EN. Recurrent sustained ventricular tachycardia. 2. Endocardial mapping. Circulation 1978;57:440–447. PubMed
Josephson ME, Horowitz LN, Spielman SR, Greenspan AM, VandePol C, Harken AH. Comparison of endocardial catheter mapping with intraoperative mapping of ventricular tachycardia. Circulation 1980;61:395–404. PubMed
Hargrove WC 3rd, Miller JM, Vassallo JA, Josephson ME. Improved results in the operative management of ventricular tachycardia related to inferior wall infarction: importance of the annular isthmus. J Thorac Cardiovasc Surg 1986;92:726–732. PubMed
Caceres J, Werner P, Jazayeri M, Akhtar M, Tchou P. Efficacy of cryosurgery alone for refractory monomorphic sustained ventricular tachycardia due to inferior wall infarction. J Am Coll Cardiol 1988;11:1254–1259. PubMed
Miller JM, Kienzle MG, Harken AH, Josephson ME. Subendocardial resection for ventricular tachycardia: predictors of surgical success. Circulation 1984;70:624–631. PubMed
Hartzler GO. Electrode catheter ablation of refractory focal ventricular tachycardia. J Am Coll Cardiol 1983;2:1107–1113. PubMed
Fontaine G, Tonet JL, Frank R, Rougier I. Clinical experience with fulgaration and antiarrhythmic therapy for the treatment of ventricular tachycardia. Chest 1989;95:785–797. PubMed
Josephson ME, Horowitz LN, Waxman HL, et al.Sustained ventricular tachycardia: role of the 12-lead electrocardiogram in localizing site of origin. Circulation 1981;64:257–272. PubMed
Josephson ME, Waxman HL, Cain ME, Gardner MJ, Buxton AE. Ventricular activation during ventricular endocardial pacing. II. Role of pacemapping to localize origin of ventricular tachycardia. Am J Cardiol 1982; 50:11–22. PubMed
Miller J, Marchlinski F, Buxton A, Josephson ME. Relationship between the 12-lead electrocardiogram during ventricular tachycardia and endocardial site of origin in patients with coronary artery disease. Circulation 1988; 77:759–766. PubMed
Levine JH, Spear JF, Weisman HF, et al.The cellular electrophysiologic changes induced by high-energy electrical ablation in canine myocardium. Circulation 1986;73:818–829. PubMed
Haines DE, Verow AF. Observations on electrode-tissue interface temperature and effect on electrical impedance during radiofrequency ablation of ventricular myocardium. Circulation 1990;82:1034–1038. PubMed
Klein LS, Shih HT, Hackett FK, Zipes DP, Miles WM. Radiofrequency catheter ablation of ventricular tachycardia in patients without structural heart disease. Circulation 1992;85:1666–1674. PubMed
Morady F, Harvey M, Kalbfleisch SJ, El-Atassi R, Calkins H, Langberg JJ. Radiofrequency catheter ablation of ventricular tachycardia in patients with coronary artery disease. Circulation 1993;87:363–372. PubMed
Morady F, Kadish A, Rosenheck S, et al.Concealed entrainment as a guide for catheter ablation of ventricular tachycardia in patients with prior myocardial infarction. J Am Coll Cardiol 1991;17:678–689. PubMed
Stevenson WG, Khan H, Sager P, et al.Identification of reentry circuit sites during catheter mapping and radiofrequency ablation of ventricular tachycardia late after myocardial infarction. Circulation 1993; 88:1647–1670. PubMed
Stevenson WG, Friedman PL, Sager PT, et al.Exploring postinfarction reentrant ventricular tachycardia with entrainment mapping. J Am Coll Cardiol 1997;29:1180–1189. PubMed
Bogun F, Bahu M, Knight BP, et al.Comparison of effective and ineffective target sites that demonstrate concealed entrainment in patients with coronary artery disease undergoing radiofrequency ablation of ventricular tachycardia. Circulation 1997;95:183–190. PubMed
El Shalakany A, Hadjis T, Papageorgiou P, et al.Entrainment mapping criteria for the prediction of termination of ventricular tachycardia by single radiofrequency lesion in patients with coronary artery disease. Circulation 1999;99:2283–2289. PubMed
Callans DJ, Zado E, Sarter BH, Schwartzman D, Gottlieb CD, Marchlinski FE. Efficacy of radiofrequency catheter ablation for ventricular tachycardia in healed myocardial infarction. Am J Cardiol 1998; 82:429–432. PubMed
Stevenson WG, Friedman PL, Kocovic D, Sager PT, Saxon LA, Pavri B. Radiofrequency catheter ablation of ventricular tachycardia after myocardial infarction. Circulation 1998;98:308–314. PubMed
Marchlinski FE, Callans DJ, Gottlieb CD, Zado E. Linear ablation lesions for control of unmappable ventricular tachycardia in patients with ischemic and nonischemic cardiomyopathy. Circulation 2000;101:1288–1296. PubMed
Marchlinski F, Garcia F, Siadatan A, et al.Ventricular tachycardia/ventricular fibrillation ablation in the setting of ischemic heart disease. J Cardiovasc Electrophysiol 2005;16:S59–S70. PubMed
Arenal A, Glez-Torrecilla E, Ortiz M, et al.Ablation of electrograms with an isolated, delayed component as treatment of unmappable monomorphic ventricular tachycardias in patients with structural heart disease. J Am Coll Cardiol 2003;41:81–92. PubMed
Bogun F, Good E, Reich S, et al.Isolated potentials during sinus rhythm and pace-mapping within scars as guides for ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2006;47:2013–2019. PubMed
Hsia HH, Lin D, Sauer WH, Callans DJ, Marchlinski FE. Relationship of late potentials to the ventricular tachycardia circuit defined by entrainment. J Interv Card Electrophysiol 2009;26:21–29. PubMed
Vergara P, Trevisi N, Ricco A, et al.Late potentials abolition as an additional technique for reduction of arrhythmia recurrence in scar related ventricular tachycardia ablation. J Cardiovasc Electrophysiol 2012;23:621–627. PubMed
Soejima K, Stevenson WG, Maisel WH, Sapp JL, Epstein LM. Electrically unexcitable scar mapping based on pacing threshold for identification of the reentry circuit isthmus: feasibility for guiding ventricular tachycardia ablation. Circulation 2002;106:1678–1683. PubMed
Arenal A, del Castillo S, Gonzalez-Torrecilla E, et al.Tachycardia-related channel in the scar tissue in patients with sustained monomorphic ventricular tachycardias: influence of the voltage scar definition. Circulation 2004; 110:2568–2574. PubMed
Hsia HH, Lin D, Sauer WH, Callans DJ, Marchlinski FE. Anatomical characterization of endocardial substrate for hemodynamically stable reentrant ventricular tachycardia: identification of endocardial conducting channels. Heart Rhythm 2006;3:503–512. PubMed
Mountantonakis SE, Park RE, Frankel DS, et al.Relationship between voltage map channels and the location of critical isthmus sites in patients with post-infarction cardiomyopathy and ventricular tachycardia. J Am Coll Cardiol 2013;61:2088–2095. PubMed
Berruezo A, Fernandez-Armenta J, Andreu D, et al.Scar dechanneling: new method for scar-related left ventricular tachycardia substrate ablation. Circ Arrhythm Electrophysiol 2015;8:326–336. PubMed
Jais P, Maury P, Khairy P, et al.Elimination of local abnormal ventricular activities: a new end point for substrate modification in patients with scar-related ventricular tachycardia. Circulation 2012;125:2184–2196. PubMed
Tung R, Mathuria N, Michowitz Y, et al.Functional pace-mapping responses for identification of targets for catheter ablation of scar-mediated ventricular tachycardia. Circ Arrhythm Electrophysiol 2012;5:264–272. PubMed PMC
de Chillou C, Groben L, Magnin-Poull I, et al.Localizing the critical isthmus of postinfarct ventricular tachycardia: the value of pace-mapping during sinus rhythm. Heart Rhythm 2014;11:175–181. PubMed
Tzou WS, Frankel DS, Hegeman T, et al.Core isolation of critical arrhythmia elements for treatment of multiple scar-based ventricular tachycardias. Circ Arrhythm Electrophysiol 2015;8:353–361. PubMed
Di Biase L, Santangeli P, Burkhardt DJ, et al.Endo-epicardial homogenization of the scar versus limited substrate ablation for the treatment of electrical storms in patients with ischemic cardiomyopathy. J Am Coll Cardiol 2012; 60:132–141. PubMed
Hsia HH, Marchlinski FE. Characterization of the electroanatomic substrate for ventricular tachycardia in patients with nonischemic cardiomyopathy. Pacing Clin Electrophysiol 2002;25:1114–1127. PubMed
Hsia HH, Callans DJ, Marchlinski FE. Characterization of endocardial electrophysiological substrate in patients with nonischemic cardiomyopathy and monomorphic ventricular tachycardia. Circulation 2003; 108:704–710. PubMed
Marchlinski FE, Zado E, Dixit S, et al.Electroanatomic substrate and outcome of catheter ablative therapy for ventricular tachycardia in setting of right ventricular cardiomyopathy. Circulation 2004;110:2293–2298. PubMed
Haqqani HM, Tschabrunn CM, Tzou WS, et al.Isolated septal substrate for ventricular tachycardia in nonischemic dilated cardiomyopathy: incidence, characterization, and implications. Heart Rhythm 2011;8:1169–1176. PubMed
Betensky BP, Kapa S, Desjardins B, et al.Characterization of trans-septal activation during septal pacing: criteria for identification of intramural ventricular tachycardia substrate in nonischemic cardiomyopathy. Circ Arrhythm Electrophysiol 2013;6:1123–1130. PubMed
Oloriz T, Silberbauer J, Maccabelli G, et al.Catheter ablation of ventricular arrhythmia in non-ischaemic cardiomyopathy: antero-septal versus inferolateral scar sub-types. Circ Arrhythm Electrophysiol 2014;7:414–423. PubMed
Sosa E, Scanavacca M, d’Avila A, Pilleggi F. A new technique to perform epicardial mapping in the electrophysiology laboratory. J Cardiovasc Electrophysiol 1996;7:531–536. PubMed
Della Bella P, Brugada J, Zeppenfeld K, et al.Epicardial ablation for ventricular tachycardia: a European multicenter study. Circ Arrhythm Electrophysiol 2011;4:653–659. PubMed
Sacher F, Roberts-Thomson K, Maury P, et al.Epicardial ventricular tachycardia ablation a multicenter safety study. J Am Coll Cardiol 2010; 55:2366–2372. PubMed
Cano O, Hutchinson M, Lin D, et al.Electroanatomic substrate and ablation outcome for suspected epicardial ventricular tachycardia in left ventricular nonischemic cardiomyopathy. J Am Coll Cardiol 2009;54:799–808. PubMed
Garcia FC, Bazan V, Zado ES, Ren JF, Marchlinski FE. Epicardial substrate and outcome with epicardial ablation of ventricular tachycardia in arrhythmogenic right ventricular cardiomyopathy/dysplasia. Circulation 2009; 120:366–375. PubMed
Santangeli P, Zado ES, Supple G, Haqqani HM, Garcia FC, Tschabrunn C, Callans DJ, Lin D, Dixit S, Hutchinson MD, Riley M, Marchlinski FE. Long-term outcome with catheter ablation of ventricular tachycardia in patients with arrhythmogenic right ventricular cardiomyopathy. Circ Arrhythm Electrophysiol 2015;8:1413–1421. PubMed
Berruezo A, Fernandez-Armenta J, Mont L, et al.Combined endocardial and epicardial catheter ablation in arrhythmogenic right ventricular dysplasia incorporating scar dechanneling technique. Circ Arrhythm Electrophysiol 2012;5:111–121. PubMed
Hutchinson MD, Gerstenfeld EP, Desjardins B, et al.Endocardial unipolar voltage mapping to detect epicardial ventricular tachycardia substrate in patients with nonischemic left ventricular cardiomyopathy. Circ Arrhythm Electrophysiol 2011;4:49–55. PubMed PMC
Polin GM, Haqqani H, Tzou W, et al.Endocardial unipolar voltage mapping to identify epicardial substrate in arrhythmogenic right ventricular cardiomyopathy/dysplasia. Heart Rhythm 2011;8:76–83. PubMed
Sosa E, Scanavacca M, d’Avila A, Oliveira F, Ramires JA. Nonsurgical transthoracic epicardial catheter ablation to treat recurrent ventricular tachycardia occurring late after myocardial infarction. J Am Coll Cardiol 2000; 35:1442–1449. PubMed
Izquierdo M, Sanchez-Gómez JM, Ferrero de Loma-Osorio A, et al.Endo-epicardial versus only-endocardial ablation as a first line strategy for the treatment of ventricular tachycardia in patients with ischemic heart disease. Circ Arrhythm Electrophysiol 2015;8:882–889. PubMed
Santangeli P, Marchlinski FE, Zado ES, et al.Percutaneous epicardial ablation of ventricular summit: outcomes and electrocardiogram predictors of success. Circ Arrhythmia Electropysiol 2015;8:337–343. PubMed
Calkins H, Epstein A, Packer D, et al.; for the Cooled RF Multi Center Investigators Group. Catheter ablation of ventricular tachycardia in patients with structural heart disease using cooled radiofrequency energy: results of a prospective multicenter study. J Am Coll Cardiol 2000; 35:1905–1914. PubMed
Stevenson WG, Wilber DJ, Natale A, et al.Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Marchlinski FE, Haffajee CI, Beshai JF, et al.Long-term success of irrigated radiofrequency catheter ablation of sustained ventricular tachycardia: post-approval THERMOCOOL VT trial. J Am Coll Cardiol 2016;67:674–683. PubMed
Tokuda M, Sobieszczyk P, Eisenhauer AC, et al.Transcoronary ethanol ablation for recurrent ventricular tachycardia after failed catheter ablation: an update. Circ Arrhythm Electrophysiol 2011;4:889–896. PubMed
Sacher F, Sobieszczyk P, Tedrow U, et al.Transcoronary ethanol ventricular tachycardia ablation in the modern electrophysiology era. Heart Rhythm 2008;5:62–68. PubMed
Koruth JS, Dukkipati S, Miller MA, Neuzil P, d’Avila A, Reddy VY. Bipolar irrigated radiofrequency ablation: a therapeutic option for refractory intramural atrial and ventricular tachycardia circuits. Heart Rhythm 2012; 9:1932–1941. PubMed
Nguyen DT, Gerstenfeld EP, Tzou WS, et al.Radiofrequency ablation using an open irrigated electrode cooled with half-normal saline. JACC Clin Electrophysiol 2017;3:1103–1110. PubMed
Sapp JL, Beeckler C, Pike R, et al.Initial human feasibility of infusion needle catheter ablation for refractory ventricular tachycardia. Circulation 2013; 128:2289–2295. PubMed
Sternick EB, Gerken LM, Scarpelli RB, Soares FC. Cooling with near-freezing saline improves efficacy of cool-tip radiofrequency catheter ablation. Heart Rhythm 2010;7:983–986. PubMed
Della Bella P, Bisceglia C, Tung R. Multielectrode contact mapping to assess scar modification in post-myocardial infarction ventricular tachycardia patients. Europace 2012;14(Suppl. 2):ii7–ii12. PubMed
Anter E, Tschabrunn CM, Buxton AE, Josephson ME. High-resolution mapping of post-infarction reentrant ventricular tachycardia-electrophysiological characterization of the circuit. Circulation 2016;134:314–327. PubMed PMC
Nakahara S, Tung R, Ramirez RJ, et al.Distribution of late potentials within infarct scars assessed by ultra high-density mapping. Heart Rhythm 2010; 7:1817–1824. PubMed
Van Herendael H, Zado ES, Haqqani H, et al.Catheter ablation of ventricular fibrillation: importance of left ventricular outflow tract and papillary muscle triggers. Heart Rhythm 2014;11:566–573. PubMed
Betensky BP, Park RE, Marchlinski FE, et al.The V(2) transition ratio: a new electrocardiographic criterion for distinguishing left from right ventricular outflow tachycardia origin. J Am Coll Cardiol 2011;57:2255–2262. PubMed
Mountantonakis SE, Frankel DS, Tschabrunn CM, et al.Ventricular arrhythmias from the coronary venous system: prevalence, mapping, and ablation. Heart Rhythm 2015;12:1145–1153. PubMed
Kanagaratnam L, Tomassoni G, Schweikert R, et al.Ventricular tachycardia as arising from the aortic sinus of Valsalva: an under recognized variant of left outflow tract ventricular tachycardia. J Am Coll Cardiol 2001; 37:1408–1414. PubMed
Yamada T, Doppalapudi H, McElderry HT, et al.Idiopathic ventricular arrhythmias originating from the papillary muscles in the left ventricle: prevalence, electrocardiographic and electrophysiological characteristics, and results of the radiofrequency catheter ablation. J Cardiovasc Electrophysiol 2010;21:62–69. PubMed
Yamada T, McElderry HT, Doppalapudi H, et al.Idiopathic ventricular arrhythmias originating from the left ventricular summit: anatomic concepts relevant to ablation. Circ Arrhythm Electrophysiol 2010;3:616–623. PubMed
Mountantonakis S, Frankel DS, Gerstenfeld EP, et al.Reversal of outflow tract ventricular premature depolarization-induced cardiomyopathy with ablation: effect of residual arrhythmia burden and preexisting cardiomyopathy on outcome. Heart Rhythm 2011;8:1608–1614. PubMed
Yokokawa M, Good E, Crawford T, et al.Recovery from left ventricular dysfunction after ablation of frequent premature ventricular complexes. Heart Rhythm 2013;10:172–175. PubMed
Buxton AE, Waxman HL, Marchlinski FE, Simson MB, Cassidy D, Josephson ME. Right ventricular tachycardia: clinical and electrophysiologic characteristics. Circulation 1983;68:917–927. PubMed
Lerman BB. Response of nonreentrant catecholamine-mediated ventricular tachycardia to endogenous adenosine and acetylcholine: evidence for myocardial receptor-mediated effects. Circulation 1993;87:382–390. PubMed
Lerman BB, Belardinelli L, West GA, Berne RM, DiMarco JP. Adenosine-sensitive ventricular tachycardia: evidence suggesting cyclic AMPmediated triggered activity. Circulation 1986;74:270–280. PubMed
Lerman BB, Stein K, Engelstein ED, et al.Mechanism of repetitive monomorphic ventricular tachycardia. Circulation 1995;92:421–429. PubMed
Sung RJ, Keung EC, Nguyen NX, Huycke EC. Effects of beta-adrenergic blockade on verapamil-responsive and verapamil-irresponsive sustained ventricular tachycardias. J Clin Invest 1988;81:688–699. PubMed PMC
Tada H, Ito S, Naito S, et al.Idiopathic ventricular arrhythmia arising from the mitral annulus: a distinct subgroup of idiopathic ventricular arrhythmias. J Am Coll Cardiol 2005;45:877–886. PubMed
Tada H, Tadokoro K, Ito S, et al.Idiopathic ventricular arrhythmias originating from the tricuspid annulus: prevalence, electrocardiographic characteristics, and results of radiofrequency catheter ablation. Heart Rhythm 2007;4:7–16. PubMed
Tada H, Tadokoro K, Miyaji K, et al.Idiopathic ventricular arrhythmias arising from the pulmonary artery: prevalence, characteristics, and topography of the arrhythmia origin. Heart Rhythm 2008;5:419–426. PubMed
Sorgente A, Epicoco G, Ali H, et al.Negative concordance pattern in bipolar and unipolar recordings: an additional mapping criterion to localize the site of origin of focal ventricular arrhythmias. Heart Rhythm 2016; 13:519–526. PubMed
Tedrow UB, Stevenson WG. Recording and interpreting unipolar electrograms to guide catheter ablation. Heart Rhythm 2011;8:791–796. PubMed
Yamada T, Yoshida Y, Inden Y, Murohara T, Kay GN. Idiopathic premature ventricular contractions exhibiting preferential conduction within the aortic root. Pacing Clin Electrophysiol 2010;33:e10–e13. PubMed
Antzelevitch C, Shimizu W. Cellular mechanisms underlying the long QT syndrome. Curr Opin Cardiol 2002;17:43–51. PubMed
Haissaguerre M, Extramiana F, Hocini M, et al.Mapping and ablation of ventricular fibrillation associated with long-QT and Brugada syndromes. Circulation 2003;108:925–928. PubMed
Lerman BB. Mechanism of outflow tract tachycardia. Heart Rhythm 2007; 4:973–976. PubMed
Damle RS, Landers M, Kelly PA, Reiter MJ, Mann DE. Radiofrequency catheter ablation of idiopathic left ventricular tachycardia originating in the left anterior fascicle. Pacing Clin Electrophysiol 1998; 21:1155–1158. PubMed
Lopera G, Stevenson WG, Soejima K, et al.Identification and ablation of three types of ventricular tachycardia involving the His-Purkinje system in patients with heart disease. J Cardiovasc Electrophysiol 2004;15:52–58. PubMed
Bogun F, Good E, Reich S, et al.Role of Purkinje fibers in post-infarction ventricular tachycardia. J Am Coll Cardiol 2006;48:2500–2507. PubMed
Spitzer KW, Pollard AE, Yang L, Zaniboni M, Cordeiro JM, Huelsing DJ. Cell-to-cell electrical interactions during early and late repolarization. J Cardiovasc Electrophysiol 2006;17(Suppl. 1):S8–S14. PubMed
Kumar S, Romero J, Mehta NK, et al.Long-term outcomes after catheter ablation of ventricular tachycardia in patients with and without structural heart disease. Heart Rhythm 2016;13:1957–1963. PubMed
El-Shalakany A, Hadjis T, Papageorgiou P, Monahan K, Epstein L, Josephson ME. Entrainment/mapping criteria for the prediction of termination of ventricular tachycardia by single radiofrequency lesion in patients with coronary artery disease. Circulation 1999;99:2283–2289. PubMed
Josephson ME, Horowitz LN, Farshidi A, Kastor JA. Recurrent sustained ventricular tachycardia. 1. Mechanisms. Circulation 1978;57:431–440. PubMed
Vaseghi M, Hu TY, Tung R, et al.Outcomes of catheter ablation of ventricular tachycardia based on etiology in nonischemic heart disease: an international Ventricular Tachycardia Ablation Center collaborative study. JACC Clin Electrophysiol 2018;4:1141–1150. PubMed PMC
Marchlinski FE, Zado E, Dixit S, et al.Electroanatomic substrate and outcome of catheter ablative therapy for ventricular tachycardia in setting of right ventricular cardiomyopathy. Circulation 2004;110:2293–2298. PubMed
Kumar S, Androulakis AF, Sellal JM, et al.Multicenter experience with catheter ablation for ventricular tachycardia in Lamin A/C cardiomyopathy. Circ Arrhythm Electrophysiol 2016;9:e004357. PubMed
Kumar S, Barbhaiya C, Nagashima K, et al.Ventricular tachycardia in cardiac sarcoidosis: characterization of ventricular substrate and outcomes of catheter ablation. Circ Arrhythm Electrophysiol 2015;8:87–93. PubMed
Sosa E, Scanavacca M, d’Avila A, Bellotti G, Pilleggi F. Radiofrequency catheter ablation of ventricular tachycardia guided by nonsurgical epicardial mapping in chronic Chagasic heart disease. Pacing Clin Electrophysiol 1999;22:128–130. PubMed
Kapel GF, Sacher F, Dekkers OM, et al.Arrhythmogenic anatomical isthmuses identified by electroanatomical mapping are the substrate for ventricular tachycardia in repaired tetralogy of Fallot. Eur Heart J 2017; 38:268–276. PubMed
Eckart RE, Hruczkowski TW, Tedrow UB, Koplan BA, Epstein LM, Stevenson WG. Sustained ventricular tachycardia associated with corrective valve surgery. Circulation 2007;116:2005–2011. PubMed
Stevenson WG, Khan H, Sager P, et al.Identification of reentry circuit sites during catheter mapping and radiofrequency ablation of ventricular tachycardia late after myocardial infarction. Circulation 1993; 88:1647–1670. PubMed
Stevenson WG, Friedman PL, Kocovic D, Sager PT, Saxon LA, Pavri B. Radiofrequency catheter ablation of ventricular tachycardia after myocardial infarction. Circulation 1998;98:308–314. PubMed
Wilber DJ, Kopp DE, Glascock DN, Kinder CA, Kall JG. Catheter ablation of the mitral isthmus for ventricular tachycardia associated with inferior infarction. Circulation 1995;92:3481–3489. PubMed
Nagashima K, Tedrow UB, Koplan BA, et al.Reentrant ventricular tachycardia originating from the periaortic region in the absence of overt structural heart disease. Circ Arrhythm Electrophysiol 2014;7:99–106. PubMed
Glashan CA, Androulakis AFA, Tao Q, et al.Whole human heart histology to validate electroanatomical voltage mapping in patients with nonischaemic cardiomyopathy and ventricular tachycardia. Eur Heart J 2018;39:2867–2875. PubMed
Pogwizd SM, Hoyt RH, Saffitz JE, Corr PB, Cox JL, Cain ME. Reentrant and focal mechanisms underlying ventricular tachycardia in the human heart. Circulation 1992;86:1872–1887. PubMed
Anter E, Kleber AG, Rottmann M, et al.Infarct-related ventricular tachycardia: redefining the electrophysiological substrate of the isthmus during sinus rhythm. JACC Clin Electrophysiol 2018;4:1033–1048. PubMed
Dillon SM, Allessie MA, Ursell PC, Wit AL. Influences of anisotropic tissue structure on reentrant circuits in the epicardial border zone of subacute canine infarcts. Circ Res 1988;63:182–206. PubMed
Downar E, Kimber S, Harris L, et al.Endocardial mapping of ventricular tachycardia in the intact human heart. II. Evidence for multiuse reentry in a functional sheet of surviving myocardium. J Am Coll Cardiol 1992; 20:869–878. PubMed
de Bakker JM, van Capelle FJ, Janse MJ, et al.Reentry as a cause of ventricular tachycardia in patients with chronic ischemic heart disease: electrophysiologic and anatomic correlation. Circulation 1988; 77:589–606. PubMed
Baba S, Dun W, Cabo C, Boyden PA. Remodeling in cells from different regions of the reentrant circuit during ventricular tachycardia. Circulation 2005;112:2386–2396. PubMed PMC
Peters NS, Wit AL. Myocardial architecture and ventricular arrhythmogenesis. Circulation 1998;97:1746–1754. PubMed
de Bakker JM, van Capelle FJ, Janse MJ, et al.Slow conduction in the infarcted human heart. ‘Zigzag’ course of activation. Circulation 1993; 88:915–926. PubMed
de Bakker JM, Stein M, van Rijen HV. Three-dimensional anatomic structure as substrate for ventricular tachycardia/ventricular fibrillation. Heart Rhythm 2005;2:777–779. PubMed
Porta-Sanchez A, Jackson N, Lukac P, et al.Multicenter study of ischemic ventricular tachycardia ablation with decrement-evoked potential (DEEP) mapping with extra stimulus. JACC Clin Electrophysiol 2018;4:307–315. PubMed
Raiman M, Tung R. Automated isochronal late activation mapping to identify deceleration zones: rationale and methodology of a practical electroanatomic mapping approach for ventricular tachycardia ablation. Comput Biol Med 2018;102:336–340. PubMed
Bogun F, Good E, Reich S, et al.Isolated potentials during sinus rhythm and pace-mapping within scars as guides for ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2006; 47:2013–2019. PubMed
Cheniti G, Vlachos K, Meo M, et al.Mapping and ablation of idiopathic ventricular fibrillation. Front Cardiovasc Med 2018;5:123. PubMed PMC
Kleber AG, Rudy Y. Basic mechanisms of cardiac impulse propagation and associated arrhythmias. Physiol Rev 2004;84:431–488. PubMed
Caceres J, Jazayeri M, McKinnie J, et al.Sustained bundle branch reentry as a mechanism of clinical tachycardia. Circulation 1989; 79:256–270. PubMed
Crijns HJ, Smeets JL, Rodriguez LM, Meijer A, Wellens HJ. Cure of interfascicular reentrant ventricular tachycardia by ablation of the anterior fascicle of the left bundle branch. J Cardiovasc Electrophysiol 1995; 6:486–492. PubMed
Huang J, Dosdall DJ, Cheng KA, Li L, Rogers JM, Ideker RE. The importance of Purkinje activation in long duration ventricular fibrillation. J Am Heart Assoc 2014;3:e000495. PubMed PMC
Jeyaratnam J, Umapathy K, Masse S, et al.Relating spatial heterogeneities to rotor formation in studying human ventricular fibrillation. Conf Proc IEEE Eng Med Biol Soc 2011;2011:231–234. PubMed
Haissaguerre M, Shah DC, Jais P, et al.Role of Purkinje conducting system in triggering of idiopathic ventricular fibrillation. Lancet 2002; 359:677–678. PubMed
Kim YH, Xie F, Yashima M, et al.Role of papillary muscle in the generation and maintenance of reentry during ventricular tachycardia and fibrillation in isolated swine right ventricle. Circulation 1999; 100:1450–1459. PubMed
Haissaguerre M, Hocini M, Cheniti G, et al.Localized structural alterations underlying a subset of unexplained sudden cardiac death. Circ Arrhythm Electrophysiol 2018;11:e006120. PubMed PMC
Aliot EM, Stevenson WG, Almendral-Garrote JM, et al.EHRA/HRS expert consensus on catheter ablation of ventricular arrhythmias: developed in a partnership with the European Heart Rhythm Association (EHRA), a registered branch of the European Society of Cardiology (ESC), and the Heart Rhythm Society (HRS); in collaboration with the American College of Cardiology (ACC) and the American Heart Association (AHA). Heart Rhythm 2009; 6:886–933. PubMed
Crosson JE, Callans DJ, Bradley DJ, et al.PACES/HRS expert consensus statement on the evaluation and management of ventricular arrhythmias in the child with a structurally normal heart. Heart Rhythm 2014; 11:e55–e78. PubMed
Yamada T, Kay GN. Anatomical consideration in catheter ablation of idiopathic ventricular arrhythmias. Arrhythm Electrophysiol Rev 2016;5:203–209. PubMed PMC
Della Bella P, Maccabelli G, Carbucicchio C. Anatomical assessment for catheter ablation of ventricular tachycardia. In: Auricchio A, ed. Cardiac Imaging in Electrophysiology. London: Springer-Verlag; 2012, p. 95–104.
Enriquez A, Malavassi F, Saenz LC, Supple G, Santangeli P, Marchlinski FE, Garcia FC. How to map and ablate left ventricular summit arrhythmias. Heart Rhythm 2017;14:141–148. PubMed
Saremi F, Muresian H, Sanchez-Quintana D. Coronary veins: comprehensive CT-anatomic classification and review of variants and clinical implications. Radiographics 2012;32:E1–E32. PubMed
Ho SY. Anatomic insights for catheter ablation of ventricular tachycardia. Heart Rhythm 2009;6(Suppl. 8):S77–S80. PubMed
Ho SY, Nihoyannopoulos P. Anatomy, echocardiography, and normal right ventricular dimensions. Heart 2006;92(Suppl. 1):i2–i13. PubMed PMC
Sánchez-Quintana D, Ho SY, Climent V, Murillo M, Cabrera JA. Anatomic evaluation of the left phrenic nerve relevant to epicardial and endocardial catheter ablation: implications for phrenic nerve injury. Heart Rhythm 2009;6:764–768. PubMed
Yamada T, Litovsky SH, Kay GN. The left ventricular ostium: an anatomic concept relevant to idiopathic ventricular arrhythmias. Circ Arrhythm Electrophysiol 2008;1:396–404. PubMed
McAlpine WA. Heart and Coronary Arteries: An Anatomical Atlas for Clinical Diagnosis, Radiological Investigation, and Surgical Treatment. New York: Springer-Verlag; 1975.
Al-Khatib SM, Stevenson WG, Ackerman MJ, et al.2017 AHA/ACC/HRS guideline for management of patients with ventricular arrhythmias and the prevention of sudden cardiac death: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society. Heart Rhythm 2018;15:e73–e189. PubMed
Shen WK, Sheldon RS, Benditt DG, et al.2017 ACC/AHA/HRS guideline for the evaluation and management of patients with syncope: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society. J Am Coll Cardiol 2017;70:e39–e110. PubMed
Yarlagadda RK, Iwai S, Stein KM, et al.Reversal of cardiomyopathy in patients with repetitive monomorphic ventricular ectopy originating from the right ventricular outflow tract. Circulation 2005;112:1092–1097. PubMed
Agarwal V, Vittinghoff E, Whitman IR, Dewland TA, Dukes JW, Marcus GM. Relation between ventricular premature complexes and incident heart failure. Am J Cardiol 2017;119:1238–1242. PubMed
Heidbüchel H, Tack J, Vanneste L, Ballet A, Ector H, Van de Werf F. Significance of arrhythmias during the first 24 hours of acute myocardial infarction treated with alteplase and effect of early administration of a beta-blocker or a bradycardiac agent on their incidence. Circulation 1994;89:1051–1059. PubMed
Moss AJ, Zareba W, Hall WJ, et al.; Multicenter Automatic Defibrillator Implantation Trial II Investigators. Prophylactic implantation of a defibrillator in patients with myocardial infarction and reduced ejection fraction. N Engl J Med 2002;346:877–883. PubMed
Priori SG, Wilde AA, Horie M, et al.HRS/EHRA/APHRS expert consensus statement on the diagnosis and management of patients with inherited primary arrhythmia syndromes: document endorsed by HRS, EHRA, and APHRS in May 2013 and by ACCF, AHA, PACES, and AEPC in June 2013. Heart Rhythm 2013;10:1932–1963. PubMed
Gersh BJ, Maron BJ, Bonow RO, et al.2011ACCF/AHA guideline for the diagnosis and treatment of hypertrophic cardiomyopathy: a report of the American College of Cardiology Foundation/American Heart Association Task Force on Practice Guidelines. J Am Coll Cardiol 2011; 58:e212–e260. PubMed
Marcus FI, McKenna WJ, Sherrill D, et al.Diagnosis of arrhythmogenic right ventricular cardiomyopathy/dysplasia: proposed modification of the task force criteria. Circulation 2010;121:1533–1541. PubMed PMC
Pedersen CT, Kay GN, Kalman J, et al.EHRA/HRS/APHRS expert consensus on ventricular arrhythmias. Heart Rhythm 2014; 11:e166–e196. PubMed
Birnie DH, Sauer WH, Bogun F, et al.HRS expert consensus statement on the diagnosis and management of arrhythmias associated with cardiac sarcoidosis. Heart Rhythm 2014;11:1305–1323. PubMed
Ehret GB, Voide C, Gex-Fabry M, et al.Drug-induced long QT syndrome in injection drug users receiving methadone: high frequency in hospitalized patients and risk factors. Arch Intern Med 2006;166:1280–1287. PubMed
Choy AM, Lang CC, Chomsky DM, Rayos GH, Wilson JR, Roden DM. Normalization of acquired QT prolongation in humans by intravenous potassium. Circulation 1997;96:2149–2154. PubMed
Bardy GH, Lee KL, Mark DB, et al.; Sudden Cardiac Death in Heart Failure Trial (SCD-HeFT) Investigators. Amiodarone or an implantable cardioverter-defibrillator for congestive heart failure. N Engl J Med 2005; 352:225–237. PubMed
Antiarrhythmics versus Implantable Defibrillators (AVID) Investigators. A comparison of antiarrhythmic-drug therapy with implantable defibrillators in patients resuscitated from near-fatal ventricular arrhythmias. N Engl J Med 1997;337:1576–1583. PubMed
Calkins H, Shyr Y, Frumin H, Schork A, Morady F. The value of the clinical history in the differentiation of syncope due to ventricular tachycardia, atrioventricular block, and neurocardiogenic syncope. Am J Med 1995; 98:365–373. PubMed
Zimetbaum P, Josephson ME. Evaluation of patients with palpitations. N Engl J Med 1998;338:1369–1373. PubMed
Brugada P, Brugada J, Mont L, Smeets J, Andries EW. A new approach to the differential diagnosis of a regular tachycardia with a wide QRS complex. Circulation 1991;83:1649–1659. PubMed
Wellens HJ, Bar FW, Lie KI. The value of the electrocardiogram in the differential diagnosis of a tachycardia with a widened QRS complex. Am J Med 1978;64:27–33. PubMed
Vereckei A, Duray G, Szenasi G, Altemose GT, Miller JM. New algorithm using only lead aVR for differential diagnosis of wide QRS complex tachycardia. Heart Rhythm 2008;5:89–98. PubMed
Ohe T, Shimomura K, Aihara N, et al.Idiopathic sustained left ventricular tachycardia: clinical and electrophysiologic characteristics. Circulation 1988;77:560–568. PubMed
Dixit S, Gerstenfeld EP, Callans DJ, Marchlinski FE. Electrocardiographic patterns of superior right ventricular outflow tract tachycardias: distinguishing septal and free-wall sites of origin. J Cardiovasc Electrophysiol 2003;14:1–7. PubMed
Callans DJ, Menz V, Schwartzman D, Gottlieb CD, Marchlinski FE. Repetitive monomorphic tachycardia from the left ventricular outflow tract: electrocardiographic patterns consistent with a left ventricular site of origin. J Am Coll Cardiol 1997;29:1023–1027. PubMed
Kanagaratnam L, Tomassoni G, Schweikert R, et al.Ventricular tachycardias arising from the aortic sinus of valsalva: an under-recognized variant of left outflow tract ventricular tachycardia. J Am Coll Cardiol 2001; 37:1408–1414. PubMed
Crawford T, Mueller G, Good E, et al.Ventricular arrhythmias originating from papillary muscles in the right ventricle. Heart Rhythm 2010; 7:725–730. PubMed
Yamada T, McElderry HT, Okada T, et al.Idiopathic focal ventricular arrhythmias originating from the anterior papillary muscle in the left ventricle. J Cardiovasc Electrophysiol 2009;20:866–872. PubMed
Li S, Wang Z, Shan Z, et al.Surface electrocardiography characteristics and radiofrequency catheter ablation of idiopathic ventricular arrhythmias originating from the left infero-septal papillary muscles: differences from those originating from the left posterior fascicle. Europace 2018; 20:1028–1034. PubMed
Berruezo A, Mont L, Nava S, Chueca E, Bartholomay E, Brugada J. Electrocardiographic recognition of the epicardial origin of ventricular tachycardias. Circulation 2004;109:1842–1847. PubMed
Daniels DV, Lu YY, Morton JB, et al.Idiopathic epicardial left ventricular tachycardia originating remote from the sinus of Valsalva: electrophysiological characteristics, catheter ablation, and identification from the 12-lead electrocardiogram. Circulation 2006;113:1659–1666. PubMed
Bazan V, Gerstenfeld EP, Garcia FC, et al.Site-specific twelve-lead ECG features to identify an epicardial origin for left ventricular tachycardia in the absence of myocardial infarction. Heart Rhythm 2007;4:1403–1410. PubMed
Valles E, Bazan V, Marchlinski FE. ECG Criteria to identify epicardial ventricular tachycardia in nonischemic cardiomyopathy. Circ Arrhythm Electrophysiol 2010;3:63–71. PubMed
Bazan V, Bala R, Garcia FC, et al.Twelve-lead ECG features to identify ventricular tachycardia arising from the epicardial right ventricle. Heart Rhythm 2006;3:1132–1139. PubMed
Perez-Rodon J, Martinez-Alday J, Baron-Esquivias G, et al.Prognostic value of the electrocardiogram in patients with syncope: data from the group for syncope study in the emergency room (GESINUR). Heart Rhythm 2014;11:2035–2044. PubMed
Marcus FI, McKenna WJ, Sherrill D, et al.Diagnosis of arrhythmogenic right ventricular cardiomyopathy/dysplasia: proposed modification of the task force criteria. Circulation 2010;121:1533–1541. PubMed PMC
Baldasseroni S, Opasich C, Gorini M, et al.Left bundle-branch block is associated with increased 1-year sudden and total mortality rate in 5517 outpatients with congestive heart failure: a report from the Italian network on congestive heart failure. Am Heart J 2002;143:398–405. PubMed
Desai AD, Yaw TS, Yamazaki T, Kaykha A, Chun S, Froelicher VF. Prognostic significance of quantitative QRS duration. Am J Med 2006; 119:600–606. PubMed
Dhar R, Alsheikh-Ali AA, Estes NA 3rd, et al.Association of prolonged QRS duration with ventricular tachyarrhythmias and sudden cardiac death in the Multicenter Automatic Defibrillator Implantation Trial II (MADIT-II). Heart Rhythm 2008;5:807–813. PubMed PMC
Freedman RA, Alderman EL, Sheffield LT, Saporito M, Fisher LD. Bundle branch block in patients with chronic coronary artery disease: angiographic correlates and prognostic significance. J Am Coll Cardiol 1987;10:73–80. PubMed
Iuliano S, Fisher SG, Karasik PE, Fletcher RD, Singh SN. QRS duration and mortality in patients with congestive heart failure. Am Heart J 2002; 143:1085–1091. PubMed
Zimetbaum PJ, Buxton AE, Batsford W, et al.Electrocardiographic predictors of arrhythmic death and total mortality in the multicenter unsustained tachycardia trial. Circulation 2004;110:766–769. PubMed
Solomon SD, Zelenkofske S, McMurray JJ, et al.Sudden death in patients with myocardial infarction and left ventricular dysfunction, heart failure, or both. N Engl J Med 2005;352:2581–2588. PubMed
Gula LJ, Klein GJ, Hellkamp AS, et al.Ejection fraction assessment and survival: an analysis of the Sudden Cardiac Death in Heart Failure Trial (SCD-HeFT). Am Heart J 2008;156:1196–1200. PubMed PMC
Yoon Y, Ktagawa K, Kato S, et al.Prognostic value of unrecognised myocardial infarction detected by late gadolinium-enhanced MRI in diabetic patients with normal global and regional left ventricular systolic function. Eur Radiol 2013;23:2101–2108. PubMed
Olivotto I, Maron M, Autore C, et al.Assessment and significance of left ventricular mass by cardiovascular magnetic resonance in hypertrophic cardiomyopathy. J Am Coll Cardiol 2008;52:559–566. PubMed
Desjardins B, Yokokawa M, Good E, et al.Characteristics of intramural scar in patients with nonischemic cardiomyopathy and relation to intramural ventricular arrhythmias. Circ Arrhythm Electrophysiol 2013;6:891–897. PubMed
Dweck M, Abgral R, Trivieri M, et al.Hybrid magnetic resonance imaging and positron emission tomography with fluorodeoxyglucose to diagnose active cardiac sarcoidosis. JACC Cardiovasc Imaging 2018;11:94–107. PubMed PMC
Piers SR, Tao Q, van Huls van Taxis CF, Schalij MJ, van der Geest RJ, Zeppenfeld K. Contrast-enhanced MRI-derived scar patterns and associated ventricular tachycardias in nonischemic cardiomyopathy: implications for the ablation strategy. Circ Arrhythm Electrophysiol 2013;6:875–883. PubMed
Brugada J, Aguinaga L, Mont L, Betriu A, Mulet J, Sanz G. Coronary artery revascularization in patients with sustained ventricular arrhythmias in the chronic phase of a myocardial infarction: effects on the electrophysiologic substrate and outcome. J Am Coll Cardiol 2001;37:529–533. PubMed
Nageh M, Kim J, Chen L, Yao JF. Implantable defibrillators for secondary prevention of sudden cardiac death in cardiac surgery patients with perioperative ventricular arrhythmias. J Am Heart Assoc 2014;3:e000686. PubMed PMC
Elsokkari I, Parkash R, Gray C, et al.Effect of coronary revascularization on long-term clinical outcomes in patients with ischemic cardiomyopathy and recurrent ventricular arrhythmia. Pacing Clin Electrophysiol 2018; 41:775–779. PubMed
Contijoch F, Rogers K, Rears H, et al.Quantification of left ventricular function with premature ventricular complexes reveals variable hemodynamics. Circ Arrhythm Electrophysiol 2016;9:e003520. PubMed PMC
White JA, Fine NM, Gula L, et al.Utility of cardiovascular magnetic resonance in identifying substrate for malignant ventricular arrhythmias. Circ Cardiovasc Imaging 2012;5:12–20. PubMed
Al-Khatib SA, Stevenson WG, Ackerman MJ, et al.2017 AHA/ACC/HRS guideline for management of patients with ventricular arrhythmias and the prevention of sudden cardiac death: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society. Heart Rhythm 2018;15:e73–e189. PubMed
Birnie D, Sauer W, Bogun F. HRS expert consensus statement on the diagnosis and management of arrhythmias associated with cardiac sarcoidosis. Heart Rhythm 2014;11:1305–1323. PubMed
Berntsen RF, Gunnes P, Lie M, Rasmussen K. Surgical revascularization in the treatment of ventricular tachycardia and fibrillation exposed by exercise-induced ischaemia. Eur Heart J 1993;14:1297–1303. PubMed
Aquaro GD, Pingitore A, Strata E, Di Bella G, Molinaro S, Lombardi M. Cardiac magnetic resonance predicts outcome in patients with premature ventricular complexes of left bundle branch block morphology. J Am Col Cardiol 2010;56:1235–1243. PubMed
Yokokawa M, Siontis KC, Kim HM, et al.Value of cardiac magnetic resonance imaging and programmed ventricular stimulation in patients with frequent premature ventricular complexes undergoing radiofrequency ablation. Heart Rhythm 2017;14:1695–1701. PubMed
Scott PA, Rosengarten JA, Curzen NP, Morgan JM. Late gadolinium enhancement cardiac magnetic resonance imaging for the prediction of ventricular tachyarrhythmic events: a meta-analysis. Eur J Heart Fail 2013;15:1019–1027. PubMed
Kuruvilla S, Adenaw N, Katwal AB, Lipinski MJ, Kramer CM, Salerno M. Late gadolinium enhancement on cardiac magnetic resonance predicts adverse cardiovascular outcomes in nonischemic cardiomyopathy: a systematic review and meta-analysis. Circ Cardiovasc Imaging 2014; 7:250–258. PubMed PMC
Di Marco A, Anguera I, Schmitt M, et al.Late gadolinium enhancement and the risk for ventricular arrhythmias or sudden death in dilated cardiomyopathy: systematic review and meta-analysis. JACC Heart Fail 2017; 5:28–38. PubMed
Ganesan AN, Gunton J, Nucifora G, McGavigan AD, Selvanayagam JB. Impact of late gadolinium enhancement on mortality, sudden death and major adverse cardiovascular events in ischemic and nonischemic cardiomyopathy: a systematic review and meta-analysis. Int J Cardiol 2018; 254:230–237. PubMed
Becker M, Cornel J, van de Ven P, van Rossum AC, Allaart CP, Germans T. The prognostic value of late gadolinium-enhanced cardiac magnetic resonance imaging in nonischemic dilated cardiomyopathy: a review and meta-analysis. JACC Cardiovasc Imaging 2018;11:1274–1284. PubMed
Disertori M, Rigoni M, Pace N, et al.Myocardial fibrosis assessment by LGE is a powerful predictor of ventricular tachyarrhythmias in ischemic and nonischemic LV dysfunction: a meta-analysis. JACC Cardiovasc Imaging 2016;9:1046–1055. PubMed
Hasdemir C, Yuksel A, Camli D, et al.Late gadolinium enhancement CMR in patients with tachycardia-induced cardiomyopathy caused by idiopathic ventricular arrhythmias. Pacing Clin Electrophysiol 2012; 35:465–470. PubMed
Sarrazin JF, Labounty T, Kuhne M, et al.Impact of radiofrequency ablation of frequent post-infarction premature ventricular complexes on left ventricular ejection fraction. Heart Rhythm 2009;6:1543–1549. PubMed PMC
El Kadri M, Yokokawa M, Labounty T, et al.Effect of ablation of frequent premature ventricular complexes on left ventricular function in patients with nonischemic cardiomyopathy. Heart Rhythm 2015;12:706–713. PubMed
Oebel S, Dinov B, Arya A, et al.ECG morphology of premature ventricular contractions predicts the presence of myocardial fibrotic substrate on cardiac magnetic resonance imaging in patients undergoing ablation. J Cardiovasc Electrophysiol 2017;28:1316–1323. PubMed
Perez-David E, Arenal A, Rubio-Guivernau J, et al.Noninvasive identification of ventricular tachycardia-related conducting channels using contrast-enhanced magnetic resonance imaging in patients with chronic myocardial infarction: comparison of signal intensity scar mapping and endocardial voltage mapping. J Am Coll Cardiol 2011;57:184–194. PubMed
Xie S, Desjardins B, Kubala M, et al.Association of regional epicardial right ventricular electrogram voltage amplitude and late gadolinium enhancement distribution on cardiac magnetic resonance in patients with arrhythmogenic right ventricular cardiomyopathy: implications for ventricular tachycardia ablation. Heart Rhythm 2018;15:987–993. PubMed PMC
Wang Z, Zhang H, Peng H, et al.Voltage combined with pace mapping is simple and effective for ablation of noninducible premature ventricular contractions originating from the right ventricular outflow tract. Clin Cardiol 2016;39:733–738. PubMed PMC
Niwano SY, Wakisaka H, Niwano H, et al.Prognostic significance of frequent premature ventricular contractions originating from the ventricular outflow tract in patients with normal left ventricular function. Heart 2009; 95:1230–1237. PubMed
Baman TS, Lange DC, Ilg KJ, et al.Relationship between burden of premature ventricular complexes and left ventricular function. Heart Rhythm 2010;7:865–869. PubMed
Halperin JL, Levine GN, Al-Khatib SM, et al.Further evolution of the ACC/AHA clinical practice guideline recommendation classification system: a report of the American College of Cardiology Foundation/American Heart Association Task Force on Clinical Practice Guidelines. Circulation 2016; 133:1426–1428. PubMed
Al-Khatib SM, Stevenson WG, Ackerman MJ, et al.2017 AHA/ACC/HRS guideline for management of patients with ventricular arrhythmias and the prevention of sudden cardiac death: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society. Heart Rhythm 2018; 15:e73–e189. PubMed
Ling Z, Liu Z, Su L, et al.Radiofrequency ablation versus antiarrhythmic medication for treatment of ventricular premature beats from the right ventricular outflow tract: prospective randomized study. Circ Arrhythm Electrophysiol 2014;7:237–243. PubMed
Zhang F, Yang B, Chen H, Ju W, Kojodjojo P, Cao K, Chen M. Magnetic versus manual catheter navigation for mapping and ablation of right ventricular outflow tract ventricular arrhythmias: a randomized controlled study. Heart Rhythm 2013;10:1178–1183. PubMed
Krittayaphong R, Sriratanasathavorn C, Dumavibhat C, et al.Electrocardiographic predictors of long term outcomes after radiofrequency ablation in patients with right-ventricular outflow tract tachycardia. Europace 2006; 8:601–606. PubMed
Vestal M, Wen MS, Yeh SJ, Wang CC, Lin FC, Wu D. Electrocardiographic predictors of failure and recurrence in patients with idiopathic right ventricular outflow tract tachycardia and ectopy who underwent radiofrequency catheter ablation. J Electrocardiol 2003;36:327–332. PubMed
Miyazawa K, Ueda M, Kondo Y, Hayashi T, Nakano M, Ishimura M, Nakano M, Kobayashi Y. Rapid mapping and differentiation in ventricular outflow tract arrhythmia using non-contact mapping. J Interv Card Electrophysiol 2017;49:41–49. PubMed
Akdeniz C, Gul EE, Celik N, Karacan M, Tuzcu V. Catheter ablation of idiopathic right ventricular arrhythmias in children with limited fluoroscopy. J Interv Card Electrophysiol 2016;46:355–360. PubMed
Morady F, Kadish AH, DiCarlo L, Kou WH, Winston S, deBuitlier M, Calkins H, Rosenheck S, Sousa J. Long-term results of catheter ablation of idiopathic right ventricular tachycardia. Circulation 1990;82:2093–2099. PubMed
Liao Z, Zhan X, Wu S, et al.Idiopathic ventricular arrhythmias originating from the pulmonary sinus cusp: prevalence, electrocardiographic/electrophysiological characteristics, and catheter ablation. J Am Coll Cardiol 2015;66:2633–2644. PubMed
Bogun F, Crawford T, Reich S, Koelling TM, Armstrong W, Good E, Jongnarangsin K, Marine JE, Chugh A, Pelosi F, Oral H, Morady F. Radiofrequency ablation of frequent, idiopathic premature ventricular complexes: comparison with a control group without intervention. Heart Rhythm 2007; 4:863–867. PubMed
Chen H, Shehata M, Swerdlow C, et al.Intramural outflow tract ventricular tachycardia: anatomy, mapping, and ablation. Circ Arrhythm Electrophysiol 2014;7:978–981. PubMed
Teh AW, Reddy VY, Koruth JS, et al.Bipolar radiofrequency catheter ablation for refractory ventricular outflow tract arrhythmias. J Cardiovasc Electrophysiol 2014;25:1093–1099. PubMed
Lamba J, Redfearn DP, Michael KA, Simpson CS, Abdollah H, Baranchuk A. Radiofrequency catheter ablation for the treatment of idiopathic premature ventricular contractions originating from the right ventricular outflow tract: a systematic review and meta-analysis. Pacing Clin Electrophysiol 2014;37:73–78. PubMed
Calkins H, Kalbfleisch J, El-Atassi R, Langberg J, Morady F. Relation between efficacy of radiofrequency catheter ablation and site of origin of idiopathic ventricular tachycardia. Am J Cardiol 1993;71:827–833. PubMed
Rodriguez LM, Smeets JL, Timmermans C, Wellens HJ. Predictors for successful ablation of right- and left-sided idiopathic ventricular tachycardia. Am J Cardiol 1997;79:309–314. PubMed
Coggins DL, Lee RJ, Sweeney J, et al.Radiofrequency catheter ablation as a cure for idiopathic tachycardia of both left and right ventricular origin. J Am Coll Cardiol 1994;23:1333–1341. PubMed
Wen MS, Yeh SJ, Wang CC, Lin FC, Chen IC, Wu D. Radiofrequency ablation therapy in idiopathic left ventricular tachycardia with no obvious structural heart disease. Circulation 1994;89:1690–1696. PubMed
Movsowitz C, Schwartzman D, Callans DJ, et al.Idiopathic right ventricular outflow tract tachycardia: narrowing the anatomic location for successful ablation. Am Heart J 1996;131:930–936. PubMed
Frey B, Kreiner G, Fritsch S, Veit F, Gossinger HD. Successful treatment of idiopathic left ventricular outflow tract tachycardia by catheter ablation or minimally invasive surgical cryoablation. Pacing Clin Electrophysiol 2000;23:870–876. PubMed
Krebs ME, Krause PC, Engelstein ED, Zipes DP, Miles WM. Ventricular tachycardias mimicking those arising from the right ventricular outflow tract. J Cardiovasc Electrophysiol 2000;11:45–51. PubMed
Kumagai K, Fukuda K, Wakayama Y, et al.Electrocardiographic characteristics of the variants of idiopathic left ventricular outflow tract ventricular tachyarrhythmias. J Cardiovasc Electrophysiol 2008;19:495–501. PubMed
Latchamsetty R, Yokokawa M, Morady F, et al.Multicenter outcomes for catheter ablation of idiopathic premature ventricular complexes. JACC Clin Electrophysiol 2015;1:116–123. PubMed
Kamakura S, Shimizu W, Matsuo K, et al.Localization of optimal ablation site of idiopathic ventricular tachycardia from right and left ventricular outflow tract by body surface ECG. Circulation 1998;98:1525–1533. PubMed
Yamada T, Yoshida N, Murakami Y, et al.Electrocardiographic characteristics of ventricular arrhythmias originating from the junction of the left and right coronary sinuses of Valsalva in the aorta: the activation pattern as a rationale for the electrocardiographic characteristics. Heart Rhythm 2008;5:184–192. PubMed
Tada H, Naito S, Ito S, et al.Significance of two potentials for predicting successful catheter ablation from the left sinus of Valsalva for left ventricular epicardial tachycardia. Pacing Clin Electrophysiol 2004;27:1053–1059. PubMed
Ouyang F, Fotuhi P, Ho SY, et al.Repetitive monomorphic ventricular tachycardia originating from the aortic sinus cusp: electrocardiographic characterization for guiding catheter ablation. J Am Coll Cardiol 2002; 39:500–508. PubMed
Callans DJ, Menz V, Schwartzman D, Gottlieb CD, Marchlinski FE. Repetitive monomorphic tachycardia from the left ventricular outflow tract: electrocardiographic patterns consistent with a left ventricular site of origin. J Am Coll Cardiol 1997;29:1023–1027. PubMed
Bala R, Garcia FC, Hutchinson MD, et al.Electrocardiographic and electrophysiologic features of ventricular arrhythmias originating from the right/left coronary cusp commissure. Heart Rhythm 2010;7:312–322. PubMed
Tada H, Nogami A, Naito S, et al.Left ventricular epicardial outflow tract tachycardia: a new distinct subgroup of outflow tract tachycardia. Jpn Circ J 2001;65:723–730. PubMed
Baman TS, Ilg KJ, Gupta SK, et al.Mapping and ablation of epicardial idiopathic ventricular arrhythmias from within the coronary venous system. Circ Arrhythm Electrophysiol 2010;3:274–279. PubMed
Carrigan T, Patel S, Yokokawa M, et al.Anatomic relationships between the coronary venous system, surrounding structures, and the site of origin of epicardial ventricular arrhythmias. J Cardiovasc Electrophysiol 2014; 25:1336–1342. PubMed
Santangeli P, Marchlinski FE, Zado ES, et al.Percutaneous epicardial ablation of ventricular arrhythmias arising from the left ventricular summit: outcomes and electrocardiogram correlates of success. Circ Arrhythm Electrophysiol 2015;8:337–343. PubMed
Nagashima K, Choi EK, Lin KY, et al.Ventricular arrhythmias near the distal great cardiac vein: challenging arrhythmia for ablation. Circ Arrhythm Electrophysiol 2014;7:906–912. PubMed
Yamada T, Murakami Y, Yoshida N, et al.Efficacy of electroanatomic mapping in the catheter ablation of premature ventricular contractions originating from the right ventricular outflow tract. J Interv Card Electrophysiol 2007;19:187–194. PubMed
Wang Z, Zhang H, Peng H, et al.Voltage combined with pace mapping is simple and effective for ablation of noninducible premature ventricular contractions originating from the right ventricular outflow tract. Clin Cardiol 2016;39:733–738. PubMed PMC
Zhong L, Lee YH, Huang XM, et al.Relative efficacy of catheter ablation vs antiarrhythmic drugs in treating premature ventricular contractions: a single-center retrospective study. Heart Rhythm 2014;11:187–193. PubMed
Van Herendael H, Garcia F, Lin D, et al.Idiopathic right ventricular arrhythmias not arising from the outflow tract: prevalence, electrocardiographic characteristics, and outcome of catheter ablation. Heart Rhythm 2011;8:511–518. PubMed
Sadek MM, Benhayon D, Sureddi R, et al.Idiopathic ventricular arrhythmias originating from the moderator band: electrocardiographic characteristics and treatment by catheter ablation. Heart Rhythm 2015;12:67–75. PubMed
Crawford T, Mueller G, Good E, et al.Ventricular arrhythmias originating from papillary muscles in the right ventricle. Heart Rhythm 2010;7:725–730. PubMed
Tada H, Tadokoro K, Miyaji K, et al.Idiopathic ventricular arrhythmias arising from the pulmonary artery: prevalence, characteristics, and topography of the arrhythmia origin. Heart Rhythm 2008;5:419–426. PubMed
Tada H, Tadokoro K, Ito S, et al.Idiopathic ventricular arrhythmias originating from the tricuspid annulus: prevalence, electrocardiographic characteristics, and results of radiofrequency catheter ablation. Heart Rhythm 2007;4:7–16. PubMed
Santoro F, DiBiase L, Hranitzky P, et al.Ventricular tachycardia originating from the septal papillary muscle of the right ventricle: electrocardiographic and electrophysiological characteristics. J Cardiovasc Electrophysiol 2015; 26:145–150. PubMed
Sasaki K, Sasaki S, Kimura M, et al.Catheter ablation of ventricular arrhythmias arising from the basal septum of the right ventricle: characteristics and significance of junctional rhythm appearing during ablation. J Interv Card Electrophysiol 2016;45:159–167. PubMed
Yue-Chun L, Wen-Wu Z, Na-Dan Z, et al.Idiopathic premature ventricular contractions and ventricular tachycardias originating from the vicinity of tricuspid annulus: results of radiofrequency catheter ablation in thirty-five patients. BMC Cardiovasc Disord 2012;10:12–32. PubMed PMC
Yamada T, Yoshida N, Itoh T, Litovsky SH, Doppalapudi H, McElderry HT, Kay GN. Idiopathic ventricular arrhythmias originating from the parietal band: electrocardiographic and electrophysiological characteristics and outcome of catheter ablation. Circ Arrhythm Electrophysiol 2017; 10:e005099. PubMed
Ceresnak SR, Pass RH, Krumerman AK, Kim SG, Nappo L, Fisher JD. Characteristics of ventricular tachycardia arising from the inflow region of the right ventricle. J Electrocardiol 2012;45:385–390. PubMed
Yamada T, Yoshida N, Litovsky SH, Itoh T, Doppalapudi H, Kay GN. Idiopathic ventricular arrhythmias originating from the infun dibular muscles: prevalence, electrocardiographic and electrophysiological characteristics, and outcome of catheter ablation. Circ Arrhythm Electrophysiol 2018;11:e005749. PubMed
Li T, Zhan XZ, Xue YM, et al.Combined approach improves the outcomes of catheter ablation of idiopathic ventricular arrhythmias originating from the vicinity of tricuspid annulus. Pacing Clin Electrophysiol 2014;37:624–629. PubMed
Lian-Pin W, Yue-Chun L, Jing-Lin Z, et al.Catheter ablation of idiopathic premature ventricular contractions and ventricular tachycardias originating from right ventricular septum. PLoS One 2013;8:e67038. PubMed PMC
Enriquez A, Pathak RK, Santangeli P, et al.Inferior lead discordance in ventricular arrhythmias: a specific marker for certain arrhythmia locations. J Cardiovasc Electrophysiol 2017;28:1179–1186. PubMed
Doppalapudi H, Yamada T, McElderry HT, Plumb VJ, Epstein AE, Kay GN. Ventricular tachycardia originating from the posterior papillary muscle in the left ventricle: a distinct clinical syndrome. Circ Arrhythm Electrophysiol 2008;1:23–29. PubMed
Yamada T, McElderry HT, Okada T, et al.Idiopathic focal ventricular arrhythmias originating from the anterior papillary muscle in the left ventricle. J Cardiovasc Electrophysiol 2009;20:866–872. PubMed
Yamada T, Doppalapudi H, McElderry HT, et al.Idiopathic ventricular arrhythmias originating from the papillary muscles in the left ventricle: prevalence, electrocardiographic and electrophysiological characteristics, and results of the radiofrequency catheter ablation. J Cardiovasc Electrophysiol 2010;21:62–69. PubMed
Yamada T, Doppalapudi H, McElderry HT, et al.Electrocardiographic and electrophysiological characteristics in idiopathic ventricular arrhythmias originating from the papillary muscles in the left ventricle: relevance for catheter ablation. Circ Arrhythm Electrophysiol 2010;3:324–331. PubMed
Bassil G, Liu CF, Markowitz SM, et al.Comparison of robotic magnetic navigation-guided and manual catheter ablation of ventricular arrhythmias arising from the papillary muscles. Europace 2018;20(Suppl. 2):ii5–ii10. PubMed
Ban JE, Lee HS, Lee DI, et al.Electrophysiological characteristics related to outcome after catheter ablation ofidiopathic ventricular arrhythmia originating from the papillary muscle in the left ventricle. Korean Circ J 2013;43:811–818. PubMed PMC
Yokokawa M, Good E, Desjardins B, et al.Predictors of successful catheter ablation of ventricular arrhythmias arising from the papillary muscles. Heart Rhythm 2010;7:1654–1659. PubMed PMC
Rivera S, Ricapito Mde L, Tomas L, et al.Results of cryoenergy and radiofrequency-based catheter ablation for treating ventricular arrhythmias arising from the papillary muscles of the left ventricle, guided by intracardiac echocardiography and image integration. Circ Arrhythm Electrophysiol 2016;9:e003874. PubMed
Al’Aref SJ, Ip JE, Markowitz SM, et al.Differentiation of papillary muscle from fascicular and mitral annular ventricular arrhythmias in patients with and without structural heart disease. Circ Arrhythm Electrophysiol 2015; 8:616–624. PubMed
Wasmer K, Köbe J, Dechering DG, et al.Ventricular arrhythmias from the mitral annulus: patient characteristics, electrophysiological findings, ablation, and prognosis. Heart Rhythm 2013;10:783–788. PubMed
Kumagai K, Yamauchi Y, Takahashi A, et al.Idiopathic left ventricular tachycardia originating from the mitral annulus. J Cardiovasc Electrophysiol 2005;16:1029–1036. PubMed
Tada H, Ito S, Naito S, et al.Idiopathic ventricular arrhythmia arising from the mitral annulus: a distinct subgroup of idiopathic ventricular arrhythmias. J Am Coll Cardiol 2005;45:877–886. PubMed
Yue-Chun L, Cheng Z, Jun H, Jun-Hua C, Jing-Lin Z, Jia-Feng L. Catheter ablation of idiopathic premature ventricular contractions and ventricular tachycardias originating from the vicinity of endocardial and epicardial mitral annulus. PLoS One 2013;8:e80777. PubMed PMC
Yamada T, Doppalapudi H, McElderry HT, Kay GN. Idiopathic mitral annular PVCs with multiple breakouts and preferential conduction unmasked by radiofrequency catheter ablation. Pacing Clin Electrophysiol 2012;35:e112–e115. PubMed
Yamada T, Litovsky SH, Kay GN. The left ventricular ostium: an anatomic concept relevant to idiopathic ventricular arrhythmias. Circ Arrhythmia Electrophysiol 2008;1:396–404. PubMed
Chen J, Hoff PI, Rossvoll O, et al.Ventricular arrhythmias originating from the aortomitral continuity: an uncommon variant of left ventricular outflow tract tachycardia. Europace 2012;14:388–395. PubMed
Hai JJ, Chahal AA, Friedman PA, et al.Electrophysiologic characteristics of ventricular arrhythmias arising from the aortic mitral continuity-potential role of the conduction system. J Cardiovasc Electrophysiol 2015;26:158–163. PubMed PMC
Yamada T, McElderry HT, Doppalapudi H, et al.Idiopathic ventricular arrhythmias originating from the left ventricular summit: anatomic concepts relevant to ablation. Circ Arrhythm Electrophysiol 2010;3:616–623. PubMed
Baman TS, Ilg KJ, Gupta SK, et al.Mapping and ablation of epicardial idiopathic ventricular arrhythmias from within the coronary venous system. Circ Arrhythm Electrophysiol 2010;3:274–279. PubMed
Mountantonakis SE, Frankel DS, Tschabrunn CM, et al.Ventricular arrhythmias from the coronary venous system: prevalence, mapping, and ablation. Heart Rhythm 2015;12:1145–1153. PubMed
Meininger GR, Berger RD. Idiopathic ventricular tachycardia originating in the great cardiac vein. Heart Rhythm 2006;3:464–466. PubMed
Yamada T, Doppalapudi H, Litovsky SH, McElderry HT, Kay GN. Challenging radiofrequency catheter ablation of idiopathic ventricular arrhythmias originating from the left ventricular summit near the left main coronary artery. Circ Arrhythm Electrophysiol 2016;9:e004202. PubMed
Yokokawa M, Latchamsetty R, Good E, et al.Ablation of epicardial ventricular arrhythmias from nonepicardial sites. Heart Rhythm 2011;8:1525–1529. PubMed
Jauregui Abularach ME, Campos B, Park KM, et al.Ablation of ventricular arrhythmias arising near the anterior epicardial veins from the left sinus of Valsalva region: ECG features, anatomic distance, and outcome. Heart Rhythm 2012;9:865–873. PubMed
Yokokawa M, Good E, Chugh A, et al.Intramural idiopathic ventricular arrhythmias originating in the intraventricular septum: mapping and ablation. Circ Arrhythm Electrophysiol 2012;5:258–263. PubMed
Doppalapudi H, Yamada T, Ramaswamy K, Ahn J, Kay GN. Idiopathic focal epicardial ventricular tachycardia originating from the crux of the heart. Heart Rhythm 2009;6:44–50. PubMed
Kawamura M, Gerstenfeld EP, Vedantham V, et al.Idiopathic ventricular arrhythmia originating from the cardiac crux or inferior septum. Circ Arrhythm Electrophysiol 2014;7:1152–1158. PubMed
Larroussi L, Badhwar N. Ventricular tachycardia arising from cardiac crux: electrocardiogram recognition and site of ablation. Card Electrophysiol Clin 2016;8:109–113. PubMed
Yui Y, Sekiguchi Y, Nogami A, et al.Electrophysiological characteristics and radiofrequency catheter ablation treatment of idiopathic ventricular arrhythmias successfully ablated from the ostium of the coronary sinus. Circ J 2017;81:1807–1815. PubMed
Komatsu Y, Otomo K, Taniguchi H, et al.Catheter ablation of ventricular arrhythmias arising from the right ventricular septum close to the His bundle: features of the local electrogram at the optimal ablation site. J Cardiovasc Electrophysiol 2011;22:878–885. PubMed
Yamada T, Plumb VJ, McElderry HT, Doppalapudi H, Epstein AE, Kay GN. Focal ventricular arrhythmias originating from the left ventricle adjacent to the membranous septum. Europace 2010;12:1467–1474. PubMed
Wei HQ, Guo XG, Liu X, et al.Safety and efficacy of catheter ablation of ventricular arrhythmias with para-Hisian origin via a systematic direct approach from the aortic sinus cusp. Heart Rhythm 2018;15:1626–1633. PubMed
Yamauchi Y, Aonuma K, Takahashi A, et al.Electrocardiographic characteristics of repetitive monomorphic right ventricular tachycardia originating near the His-bundle. J Cardiovasc Electrophysiol 2005;16:1041–1048. PubMed
Komatsu Y, Taniguchi H, Miyazaki S, et al.Two distinct electrocardiographic forms of idiopathic ventricular arrhythmia originating in the vicinity of the His bundle. Europace 2012;14:1778–1785. PubMed
Enriquez A, Tapias C, Rodriguez D, et al.How to map and ablate parahisian ventricular arrhythmias. Heart Rhythm 2018;15:1268–1274. PubMed
Santangeli P, Hutchinson MD, Supple GE, Callans DJ, Marchlinski FE, Garcia FC. Right atrial approach for ablation of ventricular arrhythmias arising from the left posterior-superior process of the left ventricle. Circ Arrhythm Electrophysiol 2016;9:e004048. PubMed
Li A, Zuberi Z, Bradfield JS, et al.Endocardial ablation of ventricular ectopic beats arising from the basal inferoseptal process of the left ventricle. Heart Rhythm 2018;15:1356–1362. PubMed
Tavares L, Dave A, Valderrabano M. Successful ablation of premature ventricular contractions originating from the inferoseptal process of the left ventricle using a coronary sinus approach. HeartRhythm Case Rep 2018; 4:371–374. PubMed PMC
Luo S, Zhan X, Ouyang F, et al.Catheter ablation of right-sided para-Hisian ventricular arrhythmias using a simple pacing strategy. Heart Rhythm 2019; 16:380–387. PubMed
Latchamsetty RY, Morady M, Kim F, et al.Multicenter outcomes for catheter ablation of idiopathic premature ventricular complexes. JACC Clinical Electrophysiol 2015;1:116–123. PubMed
Singh SN, Fletcher RD, Fisher SG, et al.Amiodarone in patients with congestive heart failure and asymptomatic ventricular arrhythmia: survival trial of antiarrhythmic therapy in congestive heart failure. N Engl J Med 1995;333:77–82. PubMed
Mountantonakis SE, Frankel DS, Gerstenfeld EP, et al.Reversal of outflow tract ventricular premature depolarization-induced cardiomyopathy with ablation: effect of residual arrhythmia burden and preexisting cardiomyopathy on outcome. Heart Rhythm 2011;8:1608–1614. PubMed
Zang M, Zhang T, Mao J, Zhou S, He B. Beneficial effects of catheter ablation of frequent premature ventricular complexes on left ventricular function. Heart 2014;100:787–793. PubMed
Lee A, Denman R, Haqqani HM. Ventricular ectopy in the context of left ventricular systolic dysfunction: risk factors and outcomes following catheter ablation. Heart Lung Circ 2019;28:379–388. PubMed
Bogun F, Crawford T, Reich S, et al.Radiofrequency ablation of frequent, idiopathic premature ventricular complexes: comparison with a control group without intervention. Heart Rhythm 2007;4:863–867. PubMed
Takemoto M, Yoshimura H, Ohba Y, et al.Radiofrequency catheter ablation of premature ventricular complexes from right ventricular outflow tract improves left ventricular dilation and clinical status in patients without structural heart disease. J Am Coll Cardiol 2005;45:1259–1265. PubMed
Baman TS, Lange DC, Ilg KJ, et al.Relationship between burden of premature ventricular complexes and left ventricular function. Heart Rhythm 2010;7:865–869. PubMed
Yarlagadda RK, Iwai S, Stein KM, et al.Reversal of cardiomyopathy in patients with repetitive monomorphic ventricular ectopy originating from the right ventricular outflow tract. Circulation 2005;112:1092–1097. PubMed
Wijnmaalen AP, Delgado V, Schalij MJ, et al.Beneficial effects of catheter ablation on left ventricular and right ventricular function in patients with frequent premature ventricular contractions and preserved ejection fraction. Heart 2010;96:1275–1280. PubMed
Sarrazin JF, Labounty T, Kuhne M, et al.Impact of radiofrequency ablation of frequent post-infarction premature ventricular complexes on left ventricular ejection fraction. Heart Rhythm 2009;6:1543–1549. PubMed PMC
El Kadri M, Yokokawa M, Labounty T, et al.Effect of ablation of frequent premature ventricular complexes on left ventricular function in patients with nonischemic cardiomyopathy. Heart Rhythm 2015;12:706–713. PubMed
Haïssaguerre M, Shoda M, Jaïs P, et al.Mapping and ablation of idiopathic ventricular fibrillation. Circulation 2002;106:962–967. PubMed
Knecht S, Sacher F, Wright M, et al.Long-term follow-up of idiopathic ventricular fibrillation ablation: a multicenter study. J Am Coll Cardiol 2009; 54:522–528. PubMed
Peichl P, Cihák R, Kozeluhová M, Wichterle D, Vancura V, Kautzner J. Catheter ablation of arrhythmic storm triggered by monomorphic ectopic beats in patients with coronary artery disease. J Interv Card Electrophysiol 2010;27:51–59. PubMed
Haïssaguerre M, Extramiana F, Hocini M, et al.Mapping and ablation of ventricular fibrillation associated with long-QT and Brugada syndromes. Circulation 2003;108:925–928. PubMed
Sadek MM, Benhayon D, Sureddi R, et al.Idiopathic ventricular arrhythmias originating from the moderator band: electrocardiographic characteristics and treatment by catheter ablation. Heart Rhythm 2015;12:67–75. PubMed
Lakkireddy D, Di Biase L, Ryschon K, et al.Radiofrequency ablation of premature ventricular ectopy improves the efficacy of cardiac resynchronization therapy in nonresponders. J Am Coll Cardiol 2012;60:1531–1539. PubMed
Kanei Y, Friedman M, Ogawa N, Hanon S, Lam P, Schweitzer P. Frequent premature ventricular complexes originating from the right ventricular outflow tract are associated with left ventricular dysfunction. Ann Noninvasive Electrocardiol 2008;13:81–85. PubMed PMC
Shanmugam N, Chua TP, Ward D. ‘Frequent’ ventricular bigeminy—a reversible cause of dilated cardiomyopathy. How frequent is ‘frequent’? Eur J Heart Fail 2006;8:869–873. PubMed
Yokokawa M, Kim HM, Good E, et al.Relation of symptoms and symptom duration to premature ventricular complex-induced cardiomyopathy. Heart Rhythm 2012;9:92–95. PubMed
Olgun H, Yokokawa M, Baman T, et al.The role of interpolation in PVC-induced cardiomyopathy. Heart Rhythm 2011;8:1046–1049. PubMed
Sapp JL, Wells GA, Parkash R, et al.Ventricular tachycardia ablation versus escalation of antiarrhythmic drugs. N Engl J Med 2016;375:111–121. PubMed
Stevenson WG, Wilber DJ, Natale A, et al.; Multicenter Thermocool VT Ablation Trial Investigators. Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Tanner H, Hindricks G, Volkmer M, et al.Catheter ablation of recurrent scar-related ventricular tachycardia using electroanatomical mapping and irrigated ablation technology: results of the prospective multicenter Euro-VT-study. J Cardiovasc Electrophysiol 2010;21:47–53. PubMed
Marchlinski FE, Haffajee CI, Beshai JF, et al.Long-term success of irrigated radiofrequency catheter ablation of sustained ventricular tachycardia: post-approval THERMOCOOL VT trial. J Am Coll Cardiol 2016;67:674–683. PubMed
Carbucicchio C, Santamaria M, Trevisi N, et al.Catheter ablation for the treatment of electrical storm in patients with implantable cardioverter-defibrillators: short- and long-term outcomes in a prospective single-center study. Circulation 2008;117:462–469. PubMed
Deneke T, Shin D, Lawo T, et al.Catheter ablation of electrical storm in a collaborative hospital network. Am J Cardiol 2011;108:233–239. PubMed
Muser D, Liang JJ, Pathak RK, et al.Long-term outcomes of catheter ablation of electrical storm in nonischemic dilated cardiomyopathy compared with ischemic cardiomyopathy. JACC Clin Electrophysiol 2017; 3:767–778. PubMed
Kumar S, Fujii A, Kapur S, et al.Beyond the storm: comparison of clinical factors, arrhythmogenic substrate, and catheter ablation outcomes in structural heart disease patients with versus those without a history of ventricular tachycardia storm. J Cardiovasc Electrophysiol 2017; 28:56–67. PubMed
Nayyar S, Ganesan AN, Brooks AG, Sullivan T, Roberts-Thomson KC, Sanders P. Venturing into ventricular arrhythmia storm: a systematic review and meta-analysis. Eur Heart J 2013;34:560–569. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl J Med 2007; 357:2657–2665. PubMed PMC
Kuck KH, Schaumann A, Eckhardt L, et al.; for the VTACH Study Group. Catheter ablation of stable ventricular tachycardia before defibrillator implantation in patients with coronary heart disease (VTACH): a multicentre randomised controlled trial. Lancet 2010;375:31–40. PubMed
Al-Khatib SM, Daubert JP, Anstrom KJ, et al.Catheter ablation for ventricular tachycardia in patients with an implantable cardioverter defibrillator (CALYPSO) pilot trial. J Cardiovasc Electrophysiol 2015;26:151–157. PubMed
Kuck KH, Tilz RR, Deneke T, et al.; SMS Investigators. Impact of substrate modification by catheter ablation on implantable cardioverter–defibrillator interventions in patients with unstable ventricular arrhythmias and coronary artery disease: results from the multicenter randomized controlled SMS (Substrate Modification Study). Circ Arrhythm Electrophysiol 2017; 10:e004422. PubMed
Martinez BK, Baker WL, Konopka A, et al.Systematic review and meta-analysis of catheter ablation of ventricular tachycardia in ischemic heart disease. Heart Rhythm 2019May10 [Epub ahead of print]. PubMed
Littmann L, Svenson RH, Gallagher JJ, et al.Functional role of the epicardium in postinfarction ventricular tachycardia: observations derived from computerized epicardial activation mapping, entrainment, and epicardial laser photoablation. Circulation 1991;83:1577–1591. PubMed
Sosa E, Scanavacca M, d’Avila A, Oliveira F, Ramires JA. Nonsurgical transthoracic epicardial catheter ablation to treat recurrent ventricular tachycardia occurring late after myocardial infarction. J Am Coll Cardiol 2000; 35:1442–1449. PubMed
Schmidt B, Chun KR, Baensch D, Antz M, Koektuerk B, Tilz RR, Metzner A, Ouyang F, Kuck KH. Catheter ablation for ventricular tachycardia after failed endocardial ablation: epicardial substrate or inappropriate endocardial ablation? Heart Rhythm 2010;7:1746–1752. PubMed
Di Biase L, Santangeli P, Burkhardt DJ, et al.Endo-epicardial homogenization of the scar versus limited endocardial substrate ablation for the treatment of electrical storms in patients with ischemic cardiomyopathy. J Am Coll Cardiol 2012;60:132–141. PubMed
Izquierdo M, Sánchez-Gómez JM, Ferrero de Loma-Osorio A, Martínez A, Bellver A, Peláez A, Núñez J, Núñez C, Chorro J, Ruiz-Granell R. Endo-epicardial versus only-endocardial ablation as a first line strategy for the treatment of ventricular tachycardia in patients with ischemic heart disease. Circ Arrhythm Electrophysiol 2015;8:882–889. PubMed
Deyell MW, Steinberg C, Doucette S, et al.Mexiletine or catheter ablation after amiodarone failure in the VANISH trial. J Cardiovasc Electrophysiol 2018;29:603–608. PubMed
Izquierdo M, Ruiz-Granell R, Ferrero A, et al.Ablation or conservative management of electrical storm due to monomorphic ventricular tachycardia: differences in outcome. Europace 2012;14:1734–1739. PubMed
Morawski S, Pruszkowska P, Sredniawa B, Lenarczyk R, Kalarus Z. Long-term outcome of catheter ablation and other form of therapy for electrical storm in patients with implantable cardioverter-defibrillators. J Interv Card Electrophysiol 2017;50:227–234. PubMed PMC
Palaniswamy C, Kolte D, Harikrishnan P, et al.Catheter ablation of postinfarction ventricular tachycardia: ten-year trends in utilization, in-hospital complications, and in-hospital mortality in the United States. Heart Rhythm 2014;11:2056–2063. PubMed
Sapp J, Nova Scotia Health Authority. Antiarrhythmics or Ablation for Ventricular Tachycardia 2 (VANISH2). Available at https://clinicaltrials.gov/show/NCT02830360.
Maury P, Baratto F, Zeppenfeld K, et al.Radio-frequency ablation as primary management of well-tolerated sustained monomorphic ventricular tachycardia in patients with structural heart disease and left ventricular ejection fraction over 30%. Eur Heart J 2014;35:1479–1485. PubMed
Pauriah M, Cismaru G, Magnin-Poull I, et al.A stepwise approach to the management of postinfarct ventricular tachycardia using catheter ablation as the first-line treatment: a single-center experience. Circ Arrhythm Electrophysiol 2013;6:351–356. PubMed
Della Bella P, De Ponti R, Uriarte JA, et al.Catheter ablation and antiarrhythmic drugs for haemodynamically tolerated post-infarction ventricular tachycardia: long-term outcome in relation to acute electrophysiological findings. Eur Heart J 2002;23:414–424. PubMed
Tung R, Michowitz Y, Yu R, et al.Epicardial ablation of ventricular tachycardia: an institutional experience of safety and efficacy. Heart Rhythm 2013;10:490–498. PubMed
Sarkozy A, Tokuda M, Tedrow UB, et al.Epicardial ablation of ventricular tachycardia in ischemic heart disease. Circ Arrhythm Electrophysiol 2013; 6:1115–1122. PubMed
Hendriks AA, Khan M, Geller L, et al.Ventricular tachycardia in ischemic cardiomyopathy; a combined endo-epicardial ablation as the first procedure versus a stepwise approach (EPILOGUE)—study protocol for a randomized controlled trial. Trials 2015;16:487. PubMed PMC
Acosta J, Fernández-Armenta J, Penela D, et al.Infarct transmurality as a criterion for first-line endo-epicardial substrate-guided ventricular tachycardia ablation in ischemic cardiomyopathy. Heart Rhythm 2016; 13:85–95. PubMed
Muser D, Santangeli P, Castro SA, et al.Long-term outcome after catheter ablation of ventricular tachycardia in patients with nonischemic dilated cardiomyopathy. Circ Arrhythm Electrophysiol 2016;9:e004328. PubMed
Proietti R, Essebag V, Beardsall J, et al.Substrate-guided ablation of haemodynamically tolerated and untolerated ventricular tachycardia in patients with structural heart disease: effect of cardiomyopathy type and acute success on long-term outcome. Europace 2015;17:461–467. PubMed
Dinov B, Arya A, Bertagnolli L, et al.Early referral for ablation of scar-related ventricular tachycardia is associated with improved acute and long-term outcomes: results from the Heart Center of Leipzig ventricular tachycardia registry. Circ Arrhythm Electrophysiol 2014;7:1144–1151. PubMed
Dinov B, Fiedler L, Schönbauer R, et al.Outcomes in catheter ablation of ventricular tachycardia in dilated nonischemic cardiomyopathy compared with ischemic cardiomyopathy: results from the Prospective Heart Centre of Leipzig VT (HELP-VT) study. Circulation 2014;129:728–736. PubMed
Tokuda M, Tedrow UB, Kojodjojo P, et al.Catheter ablation of ventricular tachycardia in nonischemic heart disease. Circ Arrhythm Electrophysiol 2012;5:992–1000. PubMed
Tung R, Vaseghi M, Frankel DS, et al.Freedom from recurrent ventricular tachycardia after catheter ablation is associated with improved survival in patients with structural heart disease: an International VT Ablation Center Collaborative Group study. Heart Rhythm 2015;12:1997–2007. PubMed PMC
Muser D, Liang JJ, Pathak RK, et al.Long-term outcomes of catheter ablation of electrical storm in nonischemic dilated cardiomyopathy compared with ischemic cardiomyopathy. JACC Clin Electrophysiol 2017;3:767–778. PubMed
Arya A, Bode K, Piorkowski C, et al.Catheter ablation of electrical storm due to monomorphic ventricular tachycardia in patients with nonischemic cardiomyopathy: acute results and its effect on long-term survival. Pacing Clin Electrophysiol 2010;33:1504–1509. PubMed
Carbucicchio C, Santamaria M, Trevisi N, et al.Catheter ablation for the treatment of electrical storm in patients with implantable cardioverter-defibrillators: short- and long-term outcomes in a prospective single-center study. Circulation 2008;117:462–469. PubMed
Hu J, Zeng S, Zhou Q, et al.Can ventricular tachycardia non-inducibility after ablation predict reduced ventricular tachycardia recurrence and mortality in patients with non-ischemic cardiomyopathy? A meta-analysis of twentyfour observational studies. Int J Cardiol 2016;222:689–695. PubMed
Della Bella P, Brugada J, Zeppenfeld K, et al.Epicardial ablation for ventricular tachycardia: a European multicenter study. Circ Arrhythm Electrophysiol 2011;4:653–659. PubMed
Sacher F, Roberts-Thomson K, Maury P, et al.Epicardial ventricular tachycardia ablation a multicenter safety study. J Am Coll Cardiol 2010;55:2366–2372. PubMed
Cano O, Hutchinson M, Lin D, et al.Electroanatomic substrate and ablation outcome for suspected epicardial ventricular tachycardia in left ventricular nonischemic cardiomyopathy. J Am Coll Cardiol 2009;54:799–808. PubMed
Jefic D, Joel B, Good E, et al.Role of radiofrequency catheter ablation of ventricular tachycardia in cardiac sarcoidosis: report from a multicenter registry. Heart Rhythm 2009;6:189–195. PubMed
Naruse Y, Sekiguchi Y, Nogami A, et al.Systematic treatment approach to ventricular tachycardia in cardiac sarcoidosis. Circ Arrhythm Electrophysiol 2014;7:407–413. PubMed
Kumar S, Barbhaiya C, Nagashima K, et al.Ventricular tachycardia in cardiac sarcoidosis: characterization of ventricular substrate and outcomes of catheter ablation. Circ Arrhythm Electrophysiol 2015;8:87–93. PubMed
Muser D, Santangeli P, Pathak RK, et al.Long-term outcomes of catheter ablation of ventricular tachycardia in patients with cardiac sarcoidosis. Circ Arrhythm Electrophysiol 2016;9:e004333. PubMed
Papageorgiou N, Providência R, Bronis K, et al.Catheter ablation for ventricular tachycardia in patients with cardiac sarcoidosis: a systematic review. Europace 2018;20:682–691. PubMed
Kumar S, Androulakis AF, Sellal JM, et al.Multicenter experience with catheter ablation for ventricular tachycardia in lamin A/C cardiomyopathy. Circ Arrhythm Electrophysiol 2016;9:e004357. PubMed
Delacretaz E, Stevenson WG, Ellison KE, Maisel WH, Friedman PL. Mapping and radiofrequency catheter ablation of the three types of sustained monomorphic ventricular tachycardia in nonischemic heart disease. J Cardiovasc Electrophysiol 2000;11:11–17. PubMed
Soejima K, Stevenson WG, Sapp JL, Selwyn AP, Couper G, Epstein LM. Endocardial and epicardial radiofrequency ablation of ventricular tachycardia associated with dilated cardiomyopathy: the importance of low-voltage scars. J Am Coll Cardiol 2004;43:1834–1842. PubMed
Nakahara S, Tung R, Ramirez RJ, et al.Characterization of the arrhythmogenic substrate in ischemic and nonischemic cardiomyopathy implications for catheter ablation of hemodynamically unstable ventricular tachycardia. J Am Coll Cardiol 2010;55:2355–2365. PubMed PMC
Liuba I, Marchlinski FE. The substrate and ablation of ventricular tachycardia in patients with nonischemic cardiomyopathy. Circ J 2013;77:1957–1966. PubMed
Bänsch D, Böcker D, Brunn J, Weber M, Breithardt G, Block M. Clusters of ventricular tachycardias signify impaired survival in patients with idiopathic dilated cardiomyopathy and implantable cardioverter defibrillators. J Am Coll Cardiol 2000;36:566–573. PubMed
Hohnloser SH, Al-Khalidi HR, Pratt CM, et al.; Shock Inhibition Evaluation with AzimiLiDe (SHIELD) Investigators. Electrical storm in patients with an implantable defibrillator: incidence, features, and preventive therapy: insights from a randomized trial. Eur Heart J 2006;27:3027–3032. PubMed
Poole JE, Johnson GW, Hellkamp AS, et al.Prognostic importance of defibrillator shocks in patients with heart failure. N Engl J Med 2008; 359:1009–1017. PubMed PMC
Gasparini M, Menozzi C, Proclemer A, et al.A simplified biventricular defibrillator with fixed long detection intervals reduces implantable cardioverter defibrillator (ICD) interventions and heart failure hospitalizations in patients with non-ischaemic cardiomyopathy implanted for primary prevention: the RELEVANT [Role of long dEtection window programming in patients with LEft VentriculAr dysfunction, Non-ischemic eTiology in primary prevention treated with a biventricular ICD] study. Eur Heart J 2009; 30:2758–2767. PubMed PMC
Santangeli P, Muser D, Maeda S, et al.Comparative effectiveness of antiarrhythmic drugs and catheter ablation for the prevention of recurrent ventricular tachycardia in patients with implantable cardioverter-defibrillators: a systematic review and meta-analysis of randomized controlled trials. Heart Rhythm 2016;13:1552–1559. PubMed
Packer DL, Prutkin JM, Hellkamp AS, et al.Impact of implantable cardioverter-defibrillator, amiodarone, and placebo on the mode of death in stable patients with heart failure: analysis from the sudden cardiac death in heart failure trial. Circulation 2009;120:2170–2176. PubMed PMC
Gökoğlan Y, Mohanty S, Gianni C, et al.Scar homogenization versus limited-substrate ablation in patients with nonischemic cardiomyopathy and ventricular tachycardia. J Am Coll Cardiol 2016;68:1990–1998. PubMed
Della Bella P, Baratto F, Tsiachris D, et al.Management of ventricular tachycardia in the setting of a dedicated unit for the treatment of complex ventricular arrhythmias: long-term outcome after ablation. Circulation 2013; 127:1359–1368. PubMed
Komatsu Y, Maury P, Sacher F, et al.Impact of substrate-based ablation of ventricular tachycardia on cardiac mortality in patients with implantable cardioverter-defibrillators. J Cardiovasc Electrophysiol 2015; 26:1230–1238. PubMed
Pasotti M, Klersy C, Pilotto A, et al.Long-term outcome and risk stratification in dilated cardiolaminopathies. J Am Coll Cardiol 2008; 52:1250–1260. PubMed
Kumar S, Baldinger SH, Gandjbakhch E, et al.Long-term arrhythmic and nonarrhythmic outcomes of Lamin A/C mutation carriers. J Am Coll Cardiol 2016;68:2299–2307. PubMed
Cohen TJ, Chien WW, Lurie KG, et al.Radiofrequency catheter ablation for treatment of bundle branch reentrant ventricular tachycardia: results and long-term follow-up. J Am Coll Cardiol 1991;18:1767–1773. PubMed
Blank Z, Dhala A, Deshpande S, Sra J, Jazayeri M, Akhtar M. Bundle branch reentrant ventricular tachycardia: cumulative experience in 48 patients. J Cardiovasc Electrophysiol 1993;4:253–262. PubMed
Mehdirad AA, Keim S, Rist K, Tchou P. Long-term clinical outcome of right bundle branch radiofrequency catheter ablation for treatment of bundle branch reentrant ventricular tachycardia. Pacing Clin Electrophysiol 1995; 18(12 Pt 1):2135–2143. PubMed
Pathak RK, Fahed J, Santangeli P, et al.Long-term outcome of catheter ablation for treatment of bundle branch re-entrant tachycardia. JACC Clin Electrophysiol 2018;4:331–338. PubMed
Narasimhan C, Jazayeri MR, Sra J, et al.Ventricular tachycardia in valvular heart disease: facilitation of bundle-branch reentry by valve surgery. Circulation 1997;96:4307–4313. PubMed
Li YG, Grönefeld G, Israel C, Bogun F, Hohnloser SH. Bundle branch reentrant tachycardia in patients with apparent normal His-Purkinje conduction: the role of functional conduction impairment. J Cardiovasc Electrophysiol 2002;13:1233–1239. PubMed
Schmidt B, Tang M, Chun KR, et al.Left bundle branch-Purkinje system in patients with bundle branch reentrant tachycardia: lessons from catheter ablation and electroanatomic mapping. Heart Rhythm 2009;6:51–58. PubMed
Blanck Z, Jazayeri M, Dhala A, Deshpande S, Sra J, Akhtar M. Bundle branch reentry: a mechanism of ventricular tachycardia in the absence of myocardial or valvular dysfunction. J Am Coll Cardiol 1993;22:1718–1722. PubMed
Chen H, Shi L, Yang B, et al.Electrophysiological characteristics of bundle branch reentry ventricular tachycardia in patients without structural heart disease. Circ Arrhythm Electrophysiol 2018;11:e006049. PubMed
Nogami A, Naito S, Tada H, et al.Demonstration of diastolic and presystolic Purkinje potentials as critical potentials in a macroreentry circuit of verapamil-sensitive idiopathic left ventricular tachycardia. J Am Coll Cardiol 2000;36:811–823. PubMed
Ouyang F, Cappato R, Ernst S, et al.Electroanatomic substrate of idiopathic left ventricular tachycardia: unidirectional block and macroreentry within the Purkinje network. Circulation 2002;105:462–469. PubMed
Liu Y, Fang Z, Yang B, et al.Catheter ablation of fascicular ventricular tachycardia: long-term clinical outcomes and mechanisms of recurrence. Circ Arrhythm Electrophysiol 2015;8:1443–1451. PubMed PMC
Nakagawa H, Beckman KJ, McClelland JH, et al.Radiofrequency catheter ablation of idiopathic left ventricular tachycardia guided by a Purkinje potential. Circulation 1993;88:2607–2617. PubMed
Chen M, Yang B, Zou J, et al.Non-contact mapping and linear ablation of the left posterior fascicle during sinus rhythm in the treatment of idiopathic left ventricular tachycardia. Europace 2005;7:138–144. PubMed
Kottkamp H, Chen X, Hindricks G, et al.Idiopathic left ventricular tachycardia: new insights into electrophysiological characteristics and radiofrequency catheter ablation. Pacing Clin Electrophysiol 1995;18:1285–1297. PubMed
Lin D, Hsia HH, Gerstenfeld EP, et al.Idiopathic fascicular left ventricular tachycardia: linear ablation lesion strategy for noninducible or nonsustained tachycardia. Heart Rhythm 2005;2:934–939. PubMed
Tada H, Nogami A, Naito S, et al.Retrograde Purkinje potential activation during sinus rhythm following catheter ablation of idiopathic left ventricular tachycardia. J Cardiovasc Electrophysiol 1998;9:1218–1224. PubMed
Tsuchiya T, Okumura K, Honda T, et al.Significance of late diastolic potential preceding Purkinje potential in verapamil-sensitive idiopathic left ventricular tachycardia. Circulation 1999;99:2408–2413. PubMed
Wen MS, Yeh SJ, Wang CC, Lin FC, Wu D. Successful radiofrequency ablation of idiopathic left ventricular tachycardia at a site away from the tachycardia exit. J Am Coll Cardiol 1997;30:1024–1031. PubMed
Arya A, Haghjoo M, Emkanjoo Z, et al.Comparison of presystolic Purkinje and late diastolic potentials for selection of ablation site in idiopathic verapamil sensitive left ventricular tachycardia. J Interv Card Electrophysiol 2004; 11:135–141. PubMed
Liu Q, Shehata M, Jiang R, et al.Macroreentrant loop in ventricular tachycardia from the left posterior fascicle: new implications for mapping and ablation. Circ Arrhythm Electrophysiol 2016;9:e004272. PubMed
Guo XG, Liu X, Zhou GB, et al.Clinical, electrocardiographic, and electrophysiological characteristics of left upper septal fascicular ventricular tachycardia. Europace 2018;20:673–681. PubMed
Collins KK, Schaffer MS, Liberman L, et al.Fascicular and nonfascicular left ventricular tachycardias in the young: an international multicenter study. J Cardiovasc Electrophysiol 2013;24:640–648. PubMed
Suzuki T, Nakamura Y, Yoshida S, et al.Radiofrequency catheter ablation of idiopathic left anterior fascicular ventricular tachycardia in children. Heart Rhythm 2014;11:1948–1956. PubMed
Fishberger SB, Olen MM,Rollinson NL, Rossi AF. Creation of partial fascicular block: an approach to ablation of idiopathic left ventricular tachycardia in the pediatric population. Pacing Clin Electrophysiol 2015;38:209–215. PubMed
Saul JP, Kanter RJ, Abrams D, et al.PACES/HRS expert consensus statement on the use of catheter ablation in children and patients with congenital heart disease: developed in partnership with the Pediatric and Congenital Electrophysiology Society (PACES) and the Heart Rhythm Society (HRS). Endorsed by the governing bodies of PACES, HRS, the American Academy of Pediatrics (AAP), the American Heart Association (AHA), and the Association for European Pediatric and Congenital Cardiology (AEPC). Heart Rhythm 2016;13:e251–e289. PubMed
Talib AK, Nogami A, Morishima I, et al.Non-reentrant fascicular tachycardia: clinical and electrophysiological characteristics of a distinct type of idiopathic ventricular tachycardia. Circ Arrhythm Electrophysiol 2016; 9:e004177. PubMed
Lopera G, Stevenson WG, Soejima K, et al.Identification and ablation of three types of ventricular tachycardia involving the His-Purkinje system in patients with heart disease. J Cardiovasc Electrophysiol 2004;15:52–58. PubMed
Gonzalez RP, Scheinman MM, Lesh MD, Helmy I, Torres V, Van Hare GF. Clinical and electrophysiologic spectrum of fascicular tachycardias. Am Heart J 1994;128:147–156. PubMed
Nogami A Purkinje-related arrhythmias. Part I: monomorphic ventricular tachycardias. Pacing Clin Electrophysiol 2011;34:624–650. PubMed
Hayashi M, Kobayashi Y, Iwasaki YK, et al.Novel mechanism of postinfarction ventricular tachycardia originating in surviving left posterior Purkinje fibers. Heart Rhythm 2006;3:908–918. PubMed
Bogun F, Good E, Reich S, et al.Role of Purkinje fibers in post-infarction ventricular tachycardia. J Am Coll Cardiol 2006;48:2500–2507. PubMed
Crosson JE, Callans DJ, Bradley DJ, et al.PACES/HRS expert consensus statement on the evaluation and management of ventricular arrhythmias in the child with a structurally normal heart. Heart Rhythm 2014;11:e55–e78. PubMed
Ozer S, Allen S, Schaffer MS. Adenosine- and verapamil-sensitive ventricular tachycardia in the newborn. Pacing Clin Electrophysiol 2001; 24:898–901. PubMed
Gatzoulis MA, Till JA, Somerville J, Redington AN. Mechanoelectrical interaction in tetralogy of Fallot. QRS prolongation relates to right ventricular size and predicts malignant ventricular arrhythmias and sudden death. Circulation 1995;92:231–237. PubMed
Harrison DA, Harris L, Siu SC, et al.Sustained ventricular tachycadia in adult patients late after repair of tetralogy of Fallot. J Am Coll Cardiol 1997;30:1368–1373. PubMed
Knauth AL, Gauvreau K, Powell AJ, et al.Ventricular size and function assessed by cardiac MRI predict major adverse clinical outcomes late after tetralogy of Fallot repair. Heart 2008;94:211–216. PubMed
Diller GP, Kempny A, Liodakis E, et al.Left ventricular longitudinal function predicts life-threatening ventricular arrhythmia and death in adults with repaired tetralogy of Fallot. Circulation 2012;125:2440–2446. PubMed
Koyak Z, Harris L, de Groot JR, et al.Sudden cardiac death in adult congenital heart disease. Circulation 2012;126:1944–1954. PubMed
Koyak Z, deGroot JR,Bouma BJ, et al.Sudden cardiac death in adult congenital heart disease: can the unpredictable be foreseen? Europace 2017;19:401–406. PubMed
Deal BJ, Scagliotti D, Miller SM, Gallastegui JL, Hariman RJ, Levitsky S. Electrophysiologic drug testing in symptomatic ventricular arrhythmias after repair of tetralogy of Fallot. Am J Cardiol 1987;59:1380–1385. PubMed
Oechslin EN, Harrison DA, Harris L, et al.Reoperation in adults with repair of tetralogy of Fallot: indications and outcomes. J Thorac Cardiovasc Surg 1999;118:245–251. PubMed
Therrien J, Siu SC, Harris L, et al.Impact of pulmonary valve replacement on arrhythmia propensity late after repair of tetralogy of Fallot. Circulation 2001;103:2489–2494. PubMed
Therrien J, Provost Y, Merchant N, Williams W, Colman J, Webb G. Optimal timing for pulmonary valve replacement in adults after tetralogy of Fallot repair. Am J Cardiol 2005;95:779–782. PubMed
Mavroudis C, Deal BJ, Backer CL, Tsao S. Arrhythmia surgery in patients with and without congenital heart disease. Ann Thorac Surg 2008;86:857–868. PubMed
Adamson L, Vohra HA, Haw MP. Does pulmonary valve replacement post repair of tetralogy of Fallot improve right ventricular function? Interact Cardiovasc Thorac Surg 2009;9:520–527. PubMed
Miyazaki A, Sakaguchi H, Ohuchi H, et al.Efficacy of hemodynamic-based management of tachyarrhythmia after repair of tetralogy of Fallot. Circ J 2012;76:2855–2862. PubMed
Khairy P, Van Hare GF, Balaji S, et al.PACES/HRS expert consensus statement on the recognition and management of arrhythmias in adult congenital heart disease: developed in partnership between the Pediatric and Congenital Electrophysiology Society (PACES) and the Heart Rhythm Society (HRS). Endorsed by the governing bodies of PACES, HRS, the American College of Cardiology (ACC), the American Heart Association (AHA), the European Heart Rhythm Association (EHRA), the Canadian Heart Rhythm Society (CHRS), and the International Society for Adult Congenital Heart Disease (ISACHD). Heart Rhythm 2014;11:e102–e165. PubMed
Lin YS, Liu PH, Wu LS, Chen YM, Chang CJ, Chu PH. Major adverse cardiovascular events in adult congenital heart disease: a population-based follow-up study from Taiwan. BMC Cardiovasc Disord 2014;14:38. PubMed PMC
Sabate Rotes A, Connolly HM, Warnes CA, et al.Ventricular arrhythmia risk stratification in patients with tetralogy of Fallot at the time of pulmonary valve replacement. Circ Arrhythm Electrophysiol 2015;8:110–116. PubMed
Gonska BD, Cao K, Raab J, Eigster G, Kreuzer H. Radiofrequency catheter ablation of right ventricular tachycardia late after repair of congenital heart defects. Circulation 1996;94:1902–1908. PubMed
Morwood JG, Triedman JK, Berul CI, et al.Radiofrequency catheter ablation of ventricular tachycardia in children and young adults with congenital heart disease. Heart Rhythm 2004;1:301–308. PubMed
Zeppenfeld K, Schalij MJ, Bartelings MM, et al.Catheterablation of ventricular tachycardia after repair of congenital heart disease: electroanatomic identification of the critical right ventricular isthmus. Circulation 2007;116:2241–2252. PubMed
Kriebel T, Saul JP, Schneider H, Sigler M, Paul T. Noncontact mapping and radiofrequency catheter ablation of fast and hemodynamically unstable ventricular tachycardia after surgical repair of tetralogy of Fallot. J Am Coll Cardiol 2007;50:2162–2168. PubMed
Kapel GF, Reichlin T, Wijnmaalen AP, et al.Left-sided ablation of ventricular tachycardia in adults with repaired tetralogy of Fallot: a case series. Circ Arrhythm Electrophysiol 2014;7:889–897. PubMed
Kapel GF, Reichlin T, Wijnmaalen AP, et al.Re-entry using anatomically determined isthmuses: a curable ventricular tachycardia in repaired congenital heart disease. Circ Arrhythm Electrophysiol 2015;8:102–109. PubMed
van Zyl M, Kapa S, Padmanabhan D, et al.Mechanism and outcomes of catheter ablation for ventricular tachycardia in adults with repaired congenital heart disease. Heart Rhythm 2016;13:1449–1454. PubMed
Kapel GF, Sacher F, Dekkers OM, et al.Arrhythmogenic anatomical isthmuses identified by electroanatomical mapping are the substrate for ventricular tachycardia in repaired tetralogy of Fallot. Eur Heart J 2017;38:268–276. PubMed
Sandhu A, Ruckdeschel E, Sauer WH, et al.Perioperative electrophysiology study in patients with tetralogy of Fallot undergoing pulmonary valve replacement will identify those at high risk of subsequent ventricular tachycardia. Heart Rhythm 2018;15:679–685. PubMed
Furushima H, Chinushi M, Sugiura H, et al.Ventricular tachycardia late after repair of congenital heart disease: efficacy of combination therapy with radiofrequency catheter ablation and class III antiarrhythmic agents and long-term outcome. J Electrocardiol 2006;39:219–224. PubMed
Tokuda M, Tedrow UB, Kojodjojo P, et al.Catheter ablation of ventricular tachycardia in nonischemic heart disease. Circ Arrhythm Electrophysiol 2012;5:992–1000. PubMed
Laredo M, Frank R, Waintraub X, et al.Ten-year outcomes of monomorphic ventricular tachycardia catheter ablation in repaired tetralogy of Fallot. Arch Cardiovasc Dis 2017;110:292–302. PubMed
Harrild DM, Berul CI, Cecchin F, et al.Pulmonary valve replacement in tetralogy of Fallot: impact on survival and ventricular tachycardia. Circulation 2009;119:445–451. PubMed PMC
Tracy CM, Epstein AE, Darbar D, et al.2012 ACCF/AHA/HRS focused update of the 2008 guidelines for device-based therapy of cardiac rhythm abnormalities: a report of the American College of Cardiology Foundation/American Heart Association Task Force on Practice Guidelines. Heart Rhythm 2012;9:1737–1753. PubMed
Berruezo A, Acosta J, Fernández-Armenta J, et al.Safety, long-term outcomes and predictors of recurrence after first-line combined endoepicardial ventricular tachycardia substrate ablation in arrhythmogenic cardiomyopathy. Impact of arrhythmic substrate distribution pattern. A prospective multicenter study. Europace 2017;19:607–616. PubMed
Jiang H, Zhang X, Yang Q, et al.Catheter ablation for ventricular tachycardia in patients with arrhythmogenic right ventricular dysplasia/cardiomyopathy: a systematic review and meta-analysis. Acta Cardiol 2016;71:639–649. PubMed
Philips B, te Riele AS, Sawant A, et al.Outcomes and ventricular tachycardia recurrence characteristics after epicardial ablation of ventricular tachycardia in arrhythmogenic right ventricular dysplasia/cardiomyopathy. Heart Rhythm 2015;12:716–725. PubMed
Santangeli P, Zado ES, Supple GE, et al.Long-term outcome with catheter ablation of ventricular tachycardia in patients with arrhythmogenic right ventricular cardiomyopathy. Circ Arrhythm Electrophysiol 2015;8:1413–1421. PubMed
Philips B, Madhavan S, James C, et al.Outcomes of catheter ablation of ventricular tachycardia in arrhythmogenic right ventricular dysplasia/cardiomyopathy. Circ Arrhythm Electrophysiol 2012;5:499–505. PubMed
Bai R, Di Biase L, Shivkumar K, et al.Ablation of ventricular arrhythmias in arrhythmogenic right ventricular dysplasia/cardiomyopathy: arrhythmia-free survival after endo-epicardial substrate based mapping and ablation. Circ Arrhythm Electrophysiol 2011;4:478–485. PubMed
Garcia FC, Bazan V, Zado ES, Ren JF, Marchlinski FE. Epicardial substrate and outcome with epicardial ablation of ventricular tachycardia in arrhythmogenic right ventricular cardiomyopathy/dysplasia. Circulation 2009; 120:366–375. PubMed
Dalal D, Jain R, Tandri H, et al.Long-term efficacy of catheter ablation of ventricular tachycardia in patients with arrhythmogenic right ventricular dysplasia/cardiomyopathy. J Am Coll Cardiol 2007;50:432–440. PubMed
Verma A, Kilicaslan F, Schweikert RA, et al.Short- and long-term success of substrate-based mapping and ablation of ventricular tachycardia in arrhythmogenic right ventricular dysplasia. Circulation 2005;111:3209–3216. PubMed
Marchlinski FE, Zado E, Dixit S, et al.Electroanatomic substrate and outcome of catheter ablative therapy for ventricular tachycardia in setting of right ventricular cardiomyopathy. Circulation 2004;110:2293–2298. PubMed
Nogami A, Sugiyasu A, Tada H, et al.Changes in the isolated delayed component as an endpoint of catheter ablation in arrhythmogenic right ventricular cardiomyopathy: predictor for long-term success. J Cardiovasc Electrophysiol 2008;19:681–688. PubMed
Müssigbrodt A, Efimova E, Knopp H, et al.Should all patients with arrhythmogenic right ventricular dysplasia/cardiomyopathy undergo epicardial catheter ablation? J Interv Card Electrophysiol 2017;48:193–199. PubMed
Pokushalov E, Romanov A, Turov A, Artyomenko S, Shirokova N, Karaskov A. Percutaneous epicardial ablation of ventricular tachycardia after failure of endocardial approach in the pediatric population with arrhythmogenic right ventricular dysplasia. Heart Rhythm 2010;7:1406–1410. PubMed
Pappone C, Brugada J, Vicedomini G, et al.Electrical substrate elimination in 135 consecutive patients with Brugada syndrome. Circ Arrhythm Electrophysiol 2017;10:e005053. PubMed
Brugada J, Pappone C, Berruezo A, et al.Brugada syndrome phenotype elimination by epicardial substrate ablation. Circ Arrhythm Electrophysiol 2015;8:1373–1381. PubMed
Zhang P, Tung R, Zhang Z, et al.Characterization of the epicardial substrate for catheter ablation of Brugada syndrome. Heart Rhythm 2016;13:2151–2158. PubMed
Nademanee K, Veerakul G, Chandanamattha P, et al.Prevention of ventricular fibrillation episodes inBrugada syndrome by catheter ablation over the anterior right ventricular outflow tract epicardium. Circulation 2011;123:1270–1279. PubMed
Berruezo A, Fernández-Armenta J, Mont L, et al.Combined endocardial and epicardial catheter ablation in arrhythmogenic right ventricular dysplasia incorporating scar dechanneling technique. Circ Arrhythm Electrophysiol 2012;5:111–121. PubMed
Towbin JA, McKenna WJ, Abrams DJ, et al.2019 HRS expert consensus statement on evaluation, risk stratification, and management of arrhythmogenic cardiomyopathy. Heart Rhythm 2019May9 [Epub ahead of print]. PubMed
Orgeron GM, James CA, Te Riele A, et al.Implantable cardioverter-defibrillator therapy in arrhythmogenic right ventricular dysplasia/cardiomyopathy: predictors of appropriate therapy, outcomes, and complications. J Am Heart Assoc 2017;6:e006242. PubMed PMC
Riley MP, Zado E, Bala R, et al.Lack of uniform progression of endocardial scar in patients with arrhythmogenic right ventricular dysplasia/cardiomyopathy and ventricular tachycardia. Circ Arrhythm Electrophysiol 2010; 3:332–338. PubMed
Berte B, Sacher F, Venlet J, et al.VT Recurrence after ablation: incomplete ablation or disease progression? A multicentric European study. J Cardiovasc Electrophysiol 2016;27:80–87. PubMed
Link MS, Laidlaw D, Polonsky B, et al.Ventricular arrhythmias in the North American multidisciplinary study of ARVC: predictors, characteristics, and treatment. J Am Coll Cardiol 2014;64:119–125. PubMed PMC
Corrado D, Leoni L, Link MS, et al.Implantable cardioverter-defibrillator therapy for prevention of sudden death in patients with arrhythmogenic right ventricular cardiomyopathy/dysplasia. Circulation 2003;108:3084–3091. PubMed
Corrado D, Calkins H, LinkMS, et al.Prophylactic implantable defibrillator in patients with arrhythmogenic right ventricular cardiomyopathy/dysplasia and no prior ventricular fibrillation or sustained ventricular tachycardia. Circulation 2010;122:1144–1152. PubMed
Belhassen B, Glick A, Viskin S. Efficacy of quinidine in high-risk patients with Brugada syndrome. Circulation 2004;110:1731–1737. PubMed
Della Bella P, Brugada J, Zeppenfeld K, et al.Epicardial ablation for ventricular tachycardia: a European multicenter study. Circ Arrhythm Electrophysiol 2011;4:653–659. PubMed
Sacher F, Roberts-Thomson K, Maury P, et al.Epicardial ventricular tachycardia ablation a multicenter safety study. J Am Coll Cardiol 2010; 55:2366–2372. PubMed
Dukkipati SR, d’Avila A, Soejima K, et al.Long-term outcomes of combined epicardial and endocardial ablation of monomorphic ventricular tachycardia related to hypertrophic cardiomyopathy. Circ Arrhythm Electrophysiol 2011;4:185–194. PubMed
Santangeli P, Di Biase L, Lakkireddy D, et al.Radiofrequency catheter ablation of ventricular arrhythmias in patients with hypertrophic cardiomyopathy: safety and feasibility. Heart Rhythm 2010;7:1036–1042. PubMed
Ueda A, Fukamizu S, Soejima K, et al.Clinical and electrophysiological characteristics in patients with sustained monomorphic reentrant ventricular tachycardia associated with dilated-phase hypertrophic cardiomyopathy. Europace 2012;14:734–740. PubMed
Inada K, Seiler J, Roberts-Thomson KC, et al.Substrate characterization and catheterablationformonomorphicventriculartachycardiainpatientswithapical hypertrophic cardiomyopathy. J Cardiovasc Electrophysiol 2011;22:41–48. PubMed
Igarashi M, Nogami A, Kurosaki K, et al.Radiofrequency catheter ablation of ventricular tachycardia in patients with hypertrophic cardiomyopathy and apical aneurysm. JACC Clin Electrophysiol 2018;4:339–350. PubMed
Della Bella P, Baratto F, Tsiachris D, et al.Management of ventricular tachycardia in the setting of a dedicated unit for the treatment of complex ventricular arrhythmias: long-term outcome after ablation. Circulation 2013;127:1359–1368. PubMed
Santangeli P, Muser D, Zado ES, et al.Acute hemodynamic decompensation during catheter ablation of scar-related ventricular tachycardia: incidence, predictors, and impact on mortality. Circ Arrhythm Electrophysiol 2015;8:68–75. PubMed
Santangeli P, Frankel DS, Tung R, et al.Early mortality after catheter ablation of ventricular tachycardia in patients with structural heart disease. J Am Coll Cardiol 2017;69:2105–2115. PubMed
Tzou WS, Tung R, Frankel DS, et al.Ventricular tachycardia ablation in severe heart failure: an International Ventricular Tachycardia Ablation Center Collaboration analysis. Circ Arrhythm Electrophysiol 2017; 10:e004494. PubMed
Enriquez A, Liang J, Gentile J, et al.Outcomes of rescue cardiopulmonary support for periprocedural acute hemodynamic decompensation in patients undergoing catheter ablation of electrical storm. Heart Rhythm 2018;15:75–80. PubMed
Mathuria N, Wu G, Rojas-Delgado F, et al.Outcomes of pre-emptive and rescue use of percutaneous left ventricular assist device in patients with structural heart disease undergoing catheter ablation of ventricular tachycardia. J Interv Card Electrophysiol 2017; 48:27–34. PubMed
Iwasawa J, Koruth JS, Choudry S, et al.Independent assessment of the PAINESD risk stratification tool for predicting adverse outcomes after VT ablation. Heart Rhythm 2018;15:S623.
Muser D, Liang JJ, Castro SA, et al.Outcomes with prophylactic use of percutaneous left ventricular assist devices in high-risk patients undergoing catheter ablation of scar-related ventricular tachycardia: a propensity-score matched analysis. Heart Rhythm 2018; 15:1500–1506. PubMed
Vakil KP, Roukoz H, Tung R, et al.Mortality prediction using a modified Seattle Heart Failure Model may improve patient selection for ventricular tachycardia ablation. Am Heart J 2015; 170:1099–1104. PubMed
Baratto F, Pappalardo F, Oloriz T, et al.Extracorporeal membrane oxygenation for hemodynamic support of ventricular tachycardia ablation. Circ Arrhythm Electrophysiol 2016;12:e004492. PubMed
Dixit S, Gerstenfeld EP, Callans DJ, Marchlinski FE. Electrocardiographic patterns of superior right ventricular outflow tract tachycardias: distinguishing septal and free-wall sites of origin. J Cardiovasc Electrophysiol 2003;14:1–7. PubMed
Yamauchi Y, Aonuma K, Takahashi A, et al.Electrocardiographic characteristics of repetitive monomorphic right ventricular tachycardia originating near the His-bundle. J Cardiovasc Electrophysiol 2005; 16:1041–1048. PubMed
Tanner H, Hindricks G, Schirdewahn P, et al.Outflow tract tachycardia with R/S transition in lead V3: six different anatomic approaches for successful ablation. J Am Coll Cardiol 2005;45:418–423. PubMed
Ouyang F, Fotuhi P, Ho SY, et al.Repetitive monomorphic ventricular tachycardia originating from the aortic sinus cusp: electrocardiographic characterization for guiding catheter ablation. J Am Coll Cardiol 2002; 39:500–508. PubMed
Tada H, Ito S, Naito S, et al.Idiopathic ventricular arrhythmia arising from the mitral annulus: a distinct subgroup of idiopathic ventricular arrhythmias. J Am Coll Cardiol 2005;45:877–886. PubMed
Good E, Desjardins B, Jongnarangsin K, et al.Ventricular arrhythmias originating from a papillary muscle in patients without prior infarction: a comparison with fascicular arrhythmias. Heart Rhythm 2008; 5:1530–1537. PubMed
Yamada T, Doppalapudi H, McElderry HT, et al.Idiopathic ventricular arrhythmias originating from the papillary muscles in the left ventricle: prevalence, electrocardiographic and electrophysiological characteristics, and results of the radiofrequency catheter ablation. J Cardiovasc Electrophysiol 2010;21:62–69. PubMed
Al’Aref SJ, Ip JE, Markowitz SM, et al.Differentiation of papillary muscle from fascicular and mitral annular ventricular arrhythmias in patients with and without structural heart disease. Circ Arrhythm Electrophysiol 2015; 8:616–624. PubMed
Kamakura S, Shimizu W, Matsuo K, et al.Localization of optimal ablation site of idiopathic ventricular tachycardia from right and left ventricular outflow tract by body surface ECG. Circulation 1998;98:1525–1533. PubMed
Betensky BP, Park RE, Marchlinski FE, et al.The V(2) transition ratio: a new electrocardiographic criterion for distinguishing left from right ventricular outflow tract tachycardia origin. J Am Coll Cardiol 2011; 57:2255–2262. PubMed
Kumagai K Idiopathic ventricular arrhythmias arising from the left ventricular outflow tract: Tips and tricks. J Arrhythmia 2014;30:211–221.
Larroussi L, Badhwar N. Ventricular tachycardia arising from cardiac crux: electrocardiogram recognition and site of ablation. Card Electrophysiol Clin 2016;8:109–113. PubMed
Enriquez A, Pathak RK, Santangeli P, et al.Inferior lead discordance in ventricular arrhythmias: a specific marker for certain arrhythmia locations. J Cardiovasc Electrophysiol 2017;28:1179–1186. PubMed
Miller JM, Marchlinski FE, Buxton AE, Josephson ME. Relationship between the 12-lead electrocardiogram during ventricular tachycardia and endocardial site of origin in patients with coronary artery disease. Circulation 1988;77:759–766. PubMed
Kuchar DL, Ruskin JN, Garan H. Electrocardiographic localization of the site of origin of ventricular tachycardia in patients with prior myocardial infarction. J Am Coll Cardiol 1989;13:893–903. PubMed
Segal OR, Chow AW, Wong T, et al.A novel algorithm for determining endocardial VT exit site from 12-lead surface ECG characteristics in human, infarct-related ventricular tachycardia. J Cardiovasc Electrophysiol 2007;18:161–168. PubMed
de Riva M, Watanabe M, Zeppenfeld K. Twelve-lead ECG of ventricular tachycardia in structural heart disease. Circ Arrhythm Electrophysiol 2015;8:951–962. PubMed
Yokokawa M, Liu TY, Yoshida K, et al.Automated analysis of the 12-lead electrocardiogram to identify the exit site of postinfarction ventricular tachycardia. Heart Rhythm 2012;9:330–334. PubMed
Yokokawa M, Jung DY, Joseph KK, Hero AO 3rd, Morady F, Bogun F. Computerized analysis of the 12-lead electrocardiogram to identify epicardial ventricular tachycardia exit sites. Heart Rhythm 2014;11:1966–1973. PubMed
Sapp JL, Bar-Tal M, Howes AJ, et al.Real-time localization of ventricular tachycardia origin from the 12-lead electrocardiogram. JACC Clin Electrophysiol 2017;3:687–699. PubMed
Berruezo A, Mont L, Nava S, Chueca E, Bartholomay E, Brugada J. Electrocardiographic recognition of the epicardial origin of ventricular tachycardias. Circulation 2004;109:1842–1847. PubMed
Bazan V, Bala R, Garcia FC, et al.Twelve-lead ECG features to identify ventricular tachycardia arising from the epicardial right ventricle. Heart Rhythm 2006;3:1132–1139. PubMed
Bazan V, Gerstenfeld EP, Garcia FC, et al.Site-specific twelve-lead ECG features to identify an epicardial origin for left ventricular tachycardia in the absence of myocardial infarction. Heart Rhythm 2007;4:1403–1410. PubMed
Valles E, Bazan V, Marchlinski FE. ECG criteria to identify epicardial ventricular tachycardia in nonischemic cardiomyopathy. Circ Arrhythm Electrophysiol 2010;3:63–71. PubMed
Piers SR, de Riva Silva M, Kapel GF, Trines SA, Schalij MJ, Zeppenfeld K. Endocardial or epicardial ventricular tachycardia in nonischemic cardiomyopathy? The role of 12-lead ECG criteria in clinical practice. Heart Rhythm 2014;11:1031–1039. PubMed
Daniels DV, Lu YY, Morton JB, et al.Idiopathic epicardial left ventricular tachycardia originating remote from the sinus of Valsalva: electrophysiological characteristics, catheter ablation, and identification from the 12-lead electrocardiogram. Circulation 2006;113:1659–1666. PubMed
Oloriz T, Silberbauer J, Maccabelli G, et al.Catheter ablation of ventricular arrhythmia in nonischemic cardiomyopathy: anteroseptal versus inferolateral scar sub-types. Circ Arrhythm Electrophysiol 2014;7:414–423. PubMed
Yoshida K, Liu TY, Scott C, et al.The value of defibrillator electrograms for recognition of clinical ventricular tachycardias and for pace mapping of post-infarction ventricular tachycardia. J Am Coll Cardiol 2010; 56:969–979. PubMed
Wang Y, Cuculich PS, Zhang J, et al.Nonninvasive electroanatomic mapping of human ventricular arrhythmias with electrocardiographic imaging. Sci Transl Med 2011;3:98ra84. PubMed PMC
Rudy Y Noninvasive electrocardiographic imaging (ECGI) of arrhythmogenic substrates in humans. Circ Res 2013;112:863–874. PubMed PMC
Varma N, Strom M, Chung MK. Noninvasive voltage and activation mapping of ARVD/C using ECG imaging. JACC Cardiovasc Imaging 2013; 6:1346–1347. PubMed
Zhang J, Cooper DH, Desouza KA, et al.Electrophysiologic scar substrate in relation to VT: noninvasive high-resolution mapping and risk assessment with ECGI. Pacing Clin Electrophysiol 2016;39:781–791. PubMed PMC
Sapp JL, Dawoud F, Clements JC, Horacek BM. Inverse solution mapping of epicardial potentials: quantitative comparison with epicardial contact mapping. Circ Arrhythm Electrophysiol 2012;5:1001–1009. PubMed
Haines DE, Beheiry S, Akar JG, et al.Heart Rhythm Society expert consensus statement on electrophysiology laboratory standards: process, protocols, equipment, personnel, and safety. Heart Rhythm 2014; 11:e9–e51. PubMed PMC
Miller MA, Dukkipati SR, Mittnacht AJ, et al.Activation and entrainment mapping of hemodynamically unstable ventricular tachycardia using a percutaneous left ventricular assist devices. J Am Coll Cardiol 2011; 58:1363–1371. PubMed
Lü F, Eckman PM, Liao KK, et al.Catheter ablation of hemodynamically unstable ventricular tachycardia with mechanical circulatory support. Int J Cardiol 2013;168:3859–3865. PubMed
Servatius H, Höfeler T, Hoffmann BA, et al.Propofol sedation administered by cardiologists for patients undergoing catheter ablation for ventricular tachycardia. Europace 2016;18:1245–1251. PubMed
American Society of Anesthesiologists Task Force on Sedation and Analgesia by Non-Anesthesiologists. Practice guidelines for sedation and analgesia by non-anesthesiologists. Anesthesiology 2002; 96:1004–1017. PubMed
Conway A, Rolley J, Page K, Fullbrook P. Clinical practice guidelines for nurse-administered propcedural sedation and analgesia in the cardiac catheterization laboratory: a modified Delphi study. J Adv Nurs 2014; 70:1040–1053. PubMed
Visser CA, Kan G, David GK, Lie KI, Durrer D. Two dimensional echocardiography in the diagnosis of left ventricular thrombus: a prospective study of 67 patients with anatomic validation. Chest 1983;83:228–232. PubMed
Ezekowitz MD, Wilson DA, Smith EO, et al.Comparison of Indium-111 platelet scintigraphy and two-dimensional echocardiography in the diagnosis of left ventricular thrombi. N Engl J Med 1982;306:1509–1513. PubMed
Stratton JR, Lighty GW Jr, Pearlman AS, Ritchie JL. Detection of left ventricular thrombus by two-dimensional echocardiography: sensitivity, specificity, and causes of uncertainty. Circulation 1982;66:156–166. PubMed
Thanigaraj S, Schechtman KB, Perez JE. Improved echocardiographic delineation of left ventricular thrombus with the use of intravenous second-generation contrast image enhancement. J Am Soc Echocardiogr 1999;12:1022–1026. PubMed
Weinsaft JW, Kim HW, Shah DJ, et al.Detection of left ventricular thrombus by delayed-enhancement cardiovascular magnetic resonance prevalence and markers in patients with systolic dysfunction. J Am Coll Cardiol 2008;52:148–157. PubMed
Weinsaft JW, Kim RJ, Ross M, et al.Contrast-enhanced anatomic imaging as compared to contrast-enhanced tissue characterization for detection of left ventricular thrombus. JACC Cardiovasc Imaging 2009;2:969–979. PubMed PMC
Siontis KC, Kim HM, Sharaf Dabbagh G, et al.Association of preprocedural cardiac magnetic resonance imaging with outcomes of ventricular tachycardia ablation in patients with idiopathic dilated cardiomyopathy. Heart Rhythm 2017;14:1487–1493. PubMed
Zghaib T, Ipek EG, Hansford R, et al.Standard ablation versus magnetic resonance imaging-guided ablation in the treatment of ventricular tachycardia. Circ Arrhythm Electrophysiol 2018;11:e005973. PubMed PMC
Andreu D, Penela D, Acosta J, et al.Cardiac magnetic resonance-aided scar dechanneling: influence on acute and long-term outcomes. Heart Rhythm 2017;14:1121–1128. PubMed
Codreanu A, Odille F, Aliot E, et al.Electroanatomic characterization of postinfarct scars comparison with 3-dimensional myocardial scar reconstruction based on magnetic resonance imaging. J Am Coll Cardiol 2008;52:839–842. PubMed
Desjardins B, Crawford T, Good E, et al.Infarct architecture and characteristics on delayed enhanced magnetic resonance imaging and electroanatomic mapping in patients with postinfarction ventricular arrhythmia. Heart Rhythm 2009;6:644–651. PubMed PMC
Bogun FM, Desjardins B, Good E, et al.Delayed-enhanced magnetic resonance imaging in nonischemic cardiomyopathy: utility for identifying the ventricular arrhythmia substrate. J Am Coll Cardiol 2009;53:1138–1145. PubMed PMC
Dickfeld T, Tian J, Ahmad G, et al.MRI-guided ventricular tachycardia ablation: integration of late gadolinium-enhanced 3D scar in patients with implantablecardioverter-defibrillators.CircArrhythmElectrophysiol 2011;4:172–184. PubMed
Fernandez-Armenta J, Berruezo A, Andreu D, et al.Three-dimensional architecture of scar and conducting channels based on high resolution ceCMR: insights for ventricular tachycardia ablation. Circ Arrhythm Electrophysiol 2013;6:528–537. PubMed
Gupta S, Desjardins B, Baman T, et al.Delayed-enhanced MR scar imaging and intraprocedural registration into an electroanatomical mapping system in post-infarction patients. JACC Cardiovasc Imaging 2012;5:207–210. PubMed PMC
Marra MP, Leoni L, Bauce B, et al.Imaging study of ventricular scar in arrhythmogenic right ventricular cardiomyopathy: comparison of 3D standard electroanatomical voltage mapping and contrast-enhanced cardiac magnetic resonance. Circ Arrhythm Electrophysiol 2012;5:91–100. PubMed
Nakahara S, Vaseghi M, Ramirez RJ, et al.Characterization of myocardial scars: electrophysiological imaging correlates in a porcine infarct model. Heart Rhythm 2011;8:1060–1067. PubMed
Ghannam M, Cochet H, Jais P, et al.Correlation between computer tomography-derived scar topography and critical ablation sites in postinfarction ventricular tachycardia. J Cardiovasc Electrophysiol 2018;29:438–445. PubMed
Esposito A, Palmisano A, Antunes S, et al.Cardiac CT with delayed enhancement in the characterization of ventricular tachycardia structural substrate: relationship between CT-segmented scar and electro-anatomic mapping. JACC Cardiovasc Imaging 2016;9:822–832. PubMed
Tian J, Jeudy J, Smith MF, et al.Three-dimensional contrast-enhanced multidetector CT for anatomic, dynamic, and perfusion characterization of abnormal myocardium to guide ventricular tachycardia ablations. Circ Arrhythm Electrophysiol 2010;3:496–504. PubMed
Yamashita S, Sacher F, Mahida S, et al.Image integration to guide catheter ablation in scar-related ventricular tachycardia. J Cardiovasc Electrophysiol 2016;27:699–708. PubMed
Komatsu Y, Cochet H, Jadidi A, et al.Regional myocardial wall thinning at multidetector computed tomography correlates to arrhythmogenic substrate in postinfarction ventricular tachycardia: assessment of structural and electrical substrate. Circ Arrhythm Electrophysiol 2013;6:342–350. PubMed
Dickfeld T, Lei P, Dilsizian V, et al.Integration of three-dimensional scar maps for ventricular tachycardia ablation with positron emission tomography-computed tomography. JACC Cardiovasc Imaging 2008;1:73–82. PubMed
Tian J, Smith MF, Chinnadurai P, et al.Clinical application of PET/CT fusion imaging for three-dimensional myocardial scar and left ventricular anatomy during ventricular tachycardia ablation. J Cardiovasc Electrophysiol 2009;20:567–604. PubMed
Andreu D, Ortiz-Perez JT, Boussy T, et al.Usefulness of contrast-enhanced cardiac magnetic resonance in identifying the ventricular arrhythmia substrate and the approach needed for ablation. Eur Heart J 2014;35:1316–1326. PubMed
Soto-Iglesias D, Acosta J, Penela D, et al.Image-based criteria to identify the presence of epicardial arrhythmogenic substrate in patients with transmural myocardial infarction. Heart Rhythm 2018;15:814–821. PubMed
Cheitlin MD, Alpert JS, Armstrong WF, et al.ACC/AHA guidelines for the clinical application of echocardiography: executive summary. A report of the American College of Cardiology/American Heart Association Task Force on practice guidelines (Committee on Clinical Application of Echocardiography). Developed in collaboration with the American Society of Echocardiography. J Am Coll Cardiol 1997;29:862–879. PubMed
Cheitlin MD, Armstrong WF, Aurigemma GP, et al.ACC/AHA/ASE 2003 guideline update for the clinical application of echocardiography—summary article: a report of the American College of Cardiology/American Heart Association Task Force on Practice Guidelines (ACC/AHA/ASE Committee to Update the 1997 Guidelines for the Clinical Application of Echocardiography). J Am Coll Cardiol 2003;42:954–970. PubMed
Mansencal N, Nasr IA, Pilliere R, et al.Usefulness of contrast echocardiography for assessment of left ventricular thrombus after acute myocardial infarction. Am J Cardiol 2007;99:1667–1670. PubMed
Srichai MB, Junor C, Rodriguez LL, et al.Clinical, imaging, and pathological characteristics of left ventricular thrombus: a comparison of contrast-enhanced magnetic resonance imaging, transthoracic echocardiography, and transesophageal echocardiography with surgical or pathological validation. Am Heart J 2006;152:75–84. PubMed
Russo RJ, Costa HS, Silva PD, et al.Assessing the risks associated with MRI in patients with a pacemaker or defibrillator. N Engl J Med 2017;376:755–764. PubMed
Nazarian S, Hansford R, Roguin A, et al.A prospective evaluation of a protocol for magnetic resonance imaging of patients with implanted cardiac devices. Ann Intern Med 2011;155:415–424. PubMed PMC
Horwood L, Attili A, Luba F, et al.Magnetic resonance imaging in patients with cardiac implanted electronic devices: focus on contraindications to magnetic resonance imaging protocols. Europace 2017;19:812–817. PubMed
Indik JH, Gimbel JR, Abe H, et al.2017 HRS expert consensus statement on magnetic resonance imaging and radiation exposure in patients with cardiovascular implantable electronic devices. Heart Rhythm 2017;14:e97–e153. PubMed
Yancy CW, Jessup M, Bozkurt B, et al.2013 ACCF/AHA guideline for the management of heart failure: a report of the American College of Cardiology Foundation/American Heart Association Task Force on Practice Guidelines. J Am Coll Cardiol 2013;62:e147–e239. PubMed
Schelbert EB, Hsu LY, Anderson SA, et al.Late gadolinium-enhancement cardiac magnetic resonance identifies postinfarction myocardial fibrosis and the border zone at the near cellular level in ex vivo rat heart. Circ Cardiovasc Imaging 2010;3:743–752. PubMed PMC
Kim RJ, Fieno DS, Parrish TB, et al.Relationship of MRI delayed contrast enhancement to irreversible injury, infarct age, and contractile function. Circulation 1999;100:1992–2002. PubMed
Yan AT, Shayne AJ, Brown KA, et al.Characterization of the peri-infarct zone by contrast-enhanced cardiac magnetic resonance imaging is a powerful predictor of post-myocardial infarction mortality. Circulation 2006; 114:32–39. PubMed
Schmidt A, Azevedo CF, Cheng A, et al.Infarct tissue heterogeneity by magnetic resonance imaging identifies enhanced cardiac arrhythmia susceptibility in patients with left ventricular dysfunction. Circulation 2007;115:2006–2014. PubMed PMC
Roes SD, Borleffs CJ, van der Geest RJ, et al.Infarct tissue heterogeneity assessed with contrast-enhanced MRI predicts spontaneous ventricular arrhythmia in patients with ischemic cardiomyopathy and implantable cardioverter-defibrillator. Circ Cardiovasc Imaging 2009;2:183–190. PubMed
Perez-David E, Arenal A, Rubio-Guivernau JL, et al.Noninvasive identification of ventricular tachycardia-related conducting channels using contrast-enhanced magnetic resonance imaging in patients with chronic myocardial infarction: comparison of signal intensity scar mapping and endocardial voltage mapping. J Am Coll Cardiol 2011;57:184–194. PubMed
Sasaki T, Hansford R, Zviman MM, et al.Quantitative assessment of artifacts on cardiac magnetic resonance imaging of patients with pacemakers and implantable cardioverter-defibrillators. Circ Cardiovasc Imaging 2011; 4:662–670. PubMed PMC
Rashid S, Rapacchi S, Vaseghi M, et al.Improved late gadolinium enhancement MR imaging for patients with implanted cardiac devices. Radiology 2014;270:269–274. PubMed PMC
Cochet H, Komatsu Y, Sacher F, et al.Integration of merged delayedenhanced magnetic resonance imaging and multidetector computed tomography for the guidance of ventricular tachycardia ablation: a pilot study. J Cardiovasc Electrophysiol 2013;24:419–426. PubMed
Desjardins B, Morady F, Bogun F. Effect of epicardial fat on electroanatomical mapping and epicardial catheter ablation. J Am Coll Cardiol 2010; 56:1320–1327. PubMed
Yamashita S, Sacher F, Mahida S, et al.Role of high-resolution image integration to visualize left phrenic nerve and coronary arteries during epicardial ventricular tachycardia ablation. Circ Arrhythm Electrophysiol 2015;8:371–380. PubMed
Tian J, Smith MF, Ahmad G, Dilsizian V, Jimenez A, Dickfeld T. Integration of 3-dimensional scar models from SPECT to guide ventricular tachycardia ablation. J Nucl Med 2012;53:894–901. PubMed
Fallavollita JA, Heavey BM, Luisi AJ Jr, et al.Regional myocardial sympathetic denervation predicts the risk of sudden cardiac arrest in ischemic cardiomyopathy. J Am Coll Cardiol 2014;63:141–149. PubMed PMC
Kammerling JJ, Green FJ, Watanabe AM, et al.Denervation supersensitivity of refractoriness in noninfarcted areas apical to transmural myocardial infarction. Circulation 1987;76:383–393. PubMed
Simoes MV, Barthel P, Matsunari I, et al.Presence of sympathetically denervated but viable myocardium and its electrophysiologic correlates after early revascularised, acute myocardial infarction. Eur Heart J 2004;25:551–557. PubMed
Klein T,Abdulghani M,Smith M,et al.Three-dimensional123I-meta-iodobenzylguanidine cardiac innervation maps to assess substrate and successful ablation sites for ventricular tachycardia: feasibility study for a novel paradigm of innervation imaging. Circ Arrhythm Electrophysiol 2015;8:583–591. PubMed
Peichl P, Wichterle D, Cihak R, Aldhoon B, Kautzner J. Catheter ablation of ventricular tachycardia in the presence of an old endocavitary thrombus guided by intracardiac echocardiography. Pacing Clin Electrophysiol 2016;39:581–587. PubMed
Douketis JD, Spyropoulos AC, Kaatz S, et al.; BRIDGE Investigators. Perioperative bridging anticoagulation in patients with atrial fibrillation. N Engl J Med 2015;373:823–833. PubMed PMC
Smith I, Kranke P, Murat I, et al.Perioperative fasting in adults and children: guidelines from the European Society of Anaesthesiology. Eur J Anaesthesiol 2011;28:556–569. PubMed
American Society of Anesthesiologists Task Force on Preoperative Fasting and the Use of Pharmacologic Agents to Reduce the Risk of Pulmonary Aspiration. Practice guidelines for preoperative fasting and the use of pharmacologic agents to reduce the risk of pulmonary aspiration: application to healthy patients undergoing elective procedures: an updated report by the American Society of Anesthesiologists Task Force on Preoperative Fasting and the Use of Pharmacologic Agents to Reduce the Risk of Pulmonary Aspiration. Anesthesiology 2017;126:376–393. PubMed
Wutzler A, Mueller A, Loehr L, et al.Minimal and deep sedation during ablation of ventricular tachycardia. Int J Cardiol 2014;172:161–164. PubMed
Servatius H, Höfeler T, Hoffmann BA, et al.Propofol sedation administered by cardiologists for patients undergoing catheter ablation for ventricular tachycardia. Europace 2016;18:1245–1251. PubMed
Nazer B, Woods C, Dewland T, Moyers B, Badhwar N, Gerstenfeld EP. Importance of ventricular tachycardia induction and mapping forpatientsreferredfor epicardial ablation. Pacing Clin Electrophysiol 2015;38:1333–1342. PubMed
American Society of Anesthesiologists Committee on Quality Management and Departmental Administration. Continuum of depth of sedation: definition of general anesthesia and levels of sedation/analgesia . Available at https://www.asahq.org/standards-and-guidelines/continuum-of-depth-of-sedation-definition-of-general-anesthesia-and-levels-of-sedationanalgesia.Accessed October 12, 2018.
Lü F, Lin J, Benditt DG.Conscious sedation and anesthesia in the cardiac electrophysiology laboratory. J Cardiovasc Electrophysiol 2013;24:237–245. PubMed
Gallagher JD. Electrophysiological mechanisms for ventricular arrhythmias in patients with myocardial ischemia: anesthesiologic considerations, Pt II. J Cardiothorac Vasc Anesth 1997;11:641–656. PubMed
Mulpuru SK, Patel DV, Wilbur SL, Vasavada BC, Furqan T. Electrical storm and termination with propofol therapy: a case report. Int J Cardiol 2008;128:e6–e8. PubMed
King S, Banker D. Etomidate as an antiarrhythmic. Br J Anaesth 2005; 95:425. PubMed
Mandel JE, Hutchinson MD, Marchlinski FE. Remifentanil–midazolam sedation provides hemodynamic stability and comfort during epicardial ablation of ventricular tachycardia. J Cardiovasc Electrophysiol 2011;22:464–466. PubMed
Nof E, Reichlin T, Enriquez AD, et al.The impact of general anesthesia on initiation and stability of VT during catheter ablation. Heart Rhythm 2015; 12:2213–2220. PubMed
Ramoul K, Tafer N, Sacher F, et al.Conscious sedation with sufentanil and midazolam for epicardial VT ablation. J Innov Card Rhythm Manag 2012; 3:849–853.
Sharma PS, Padala SK, Gunda S, Koneru JN, Ellenbogen KA. Vascular complications during catheter ablation of cardiac arrhythmias: a comparison between vascular ultrasound guided access and conventional vascular access. J Cardiovasc Electrophysiol 2016;27:1160–1166. PubMed
Tanaka-Esposito CC, Chung MK, Abraham JM, Cantillon DJ, Abi-Saleh B, Tchou PJ. Real-time ultrasound guidance reduces total and major vascular complications in patients undergoing pulmonary vein antral isolation on therapeutic warfarin. J Interv Card Electrophysiol 2013;37:163–168. PubMed PMC
Yamagata K, Wichterle D, Roubícek T, et al.Ultrasound-guided versus conventional femoral venipuncture for catheter ablation of atrial fibrillation: a multicentre randomized efficacy and safety trial (ULTRA-FAST trial). Europace 2018;20:1107–1114. PubMed
Sobolev M, Shiloh AL, Di Biase L, Slovut DP. Ultrasound-guided cannulation of the femoral vein in electrophysiological procedures: a systematic review and meta-analysis. Europace 2017;19:850–855. PubMed
Seto AH, Abu-Fadel MS, Sparling JM, et al.Real-time ultrasound guidance facilitates femoral arterial access and reduces vascular complications: FAUST (Femoral Arterial Access With Ultrasound Trial). JACC Cardiovasc Interv 2010;3:751–758. PubMed
Bohnen M, Stevenson WG, Tedrow UB, et al.Incidence and predictors of major complications from contemporary catheter ablation to treat cardiac arrhythmias. Heart Rhythm 2011;8:1661–1666. PubMed
Tilz RR, Makimoto H, Lin T, et al.In vivo left-ventricular contact force analysis: comparison of antegrade transseptal with retrograde transaortic mapping strategies and correlation of impedance and electrical amplitude with contact force. Europace 2014;16:1387–1395. PubMed PMC
d’Avila A, Gutierrez P, Scanavacca M, et al.Effects of radiofrequency pulses delivered in the vicinity of the coronary arteries: implications for nonsurgical transthoracic epicardial catheter ablation to treat ventricular tachycardia. Pacing Clin Electrophysiol 2002;25:1488–1495. PubMed
Kawamura M, Kobayashi Y, Ito H, et al.Epicardial ablation with cooled tip catheter close to the coronary arteries is effective and safe in the porcine heart if the ventricular potential is being monitored in the epicardium and endocardium. Circ J 2006;70:926–932. PubMed
Viles-Gonzalez JF, de Castro Miranda R, Scanavacca M, Sosa E, d’Avila A. Acute and chronic effects of epicardial radiofrequency applications delivered on epicardial coronary arteries. Circ Arrhythm Electrophysiol 2011;4:526–531. PubMed
Sacher F, Roberts-Thomson K, Maury P, et al.Epicardial ventricular tachycardia ablation a multicenter safety study. J Am Coll Cardiol 2010; 55:2366–2372. PubMed
Roberts-Thomson KC, Seiler J, Steven D, et al.Percutaneous access of the epicardial space for mapping ventricular and supraventricular arrhythmias in patients with and without prior cardiac surgery. J Cardiovasc Electrophysiol 2010;21:406–411. PubMed
Tschabrunn CM, Haqqani HM, Cooper JM, et al.Percutaneous epicardial ventricular tachycardia ablation after noncoronary cardiac surgery or pericarditis. Heart Rhythm 2013;10:165–169. PubMed
Killu AM, Ebrille E, Asirvatham SJ, et al.Percutaneous epicardial access for mapping and ablation is feasible in patients with prior cardiac surgery, including coronary bypass surgery. Circ Arrhythm Electrophysiol 2015; 8:94–101. PubMed
Soejima K, Couper G, Cooper JM, Sapp JL, Epstein LM, Stevenson WG. Subxiphoid surgical approach for epicardial catheter-based mapping and ablation in patients with prior cardiac surgery or difficult pericardial access. Circulation 2004;110:1197–1201. PubMed
Michowitz Y, Mathuria N, Tung R, et al.Hybrid procedures for epicardial catheter ablation of ventricular tachycardia: value of surgical access. Heart Rhythm 2010;7:1635–1643. PubMed
Bai R, Patel D, Di Biase L, et al.Phrenic nerve injury after catheter ablation: should we worry about this complication? J Cardiovasc Electrophysiol 2006;17:944–948. PubMed
Di Biase L, Burkhardt JD, Pelargonio G, et al.Prevention of phrenic nerve injury during epicardial ablation: comparison of methods for separating the phrenic nerve from the epicardial surface. Heart Rhythm 2009;6:957–961. PubMed
Bogun FM, Desjardins B, Good E, et al.Delayed-enhanced magnetic resonance imaging in nonischemic cardiomyopathy: utility for identifying the ventricular arrhythmia substrate. J Am Coll Cardiol 2009;53:1138–1145. PubMed PMC
Cano O, Hutchinson M, Lin D, et al.Electroanatomic substrate and ablation outcome for suspected epicardial ventricular tachycardia in left ventricular nonischemic cardiomyopathy. J Am Coll Cardiol 2009; 54:799–808. PubMed
Hutchinson MD, Gerstenfeld EP, Desjardins B, et al.Endocardial unipolar voltage mapping to detect epicardial ventricular tachycardia substrate in patients with nonischemic left ventricular cardiomyopathy. Circ Arrhythm Electrophysiol 2011;4:49–55. PubMed PMC
Basso C, Thiene G, Corrado D, Angelini A, Nava A, Valente M. Arrhythmogenic right ventricular cardiomyopathy. Dysplasia, dystrophy, or myocarditis? Circulation 1996;94:983–991. PubMed
Wichter T, Paul TM, Eckardt L, et al.Arrhythmogenic right ventricular cardiomyopathy. Antiarrhythmic drugs, catheter ablation, or ICD? Herz 2005;30:91–101. PubMed
Garcia FC, Bazan V, Zado ES, Ren JF, Marchlinski FE. Epicardial substrate and outcome with epicardial ablation of ventricular tachycardia in arrhythmogenic right ventricular cardiomyopathy/dysplasia. Circulation 2009;120:366–375. PubMed
Berruezo A, Fernandez-Armenta J, Mont L, et al.Combined endocardial and epicardial catheter ablation in arrhythmogenic right ventricular dysplasia incorporating scar dechanneling technique. Circ Arrhythm Electrophysiol 2012;5:111–121. PubMed
Bai R, Di Biase L, Shivkumar K, et al.Ablation of ventricular arrhythmias in arrhythmogenic right ventricular dysplasia/cardiomyopathy: arrhythmia-free survival after endo-epicardial substrate based mapping and ablation. Circ Arrhythm Electrophysiol 2011;4:478–485. PubMed
Dello Russo A, Casella M, Pieroni M, et al.Drug-refractory ventricular tachycardias after myocarditis: endocardial and epicardial radiofrequency catheter ablation. Circ Arrhythm Electrophysiol 2012;5:492–498. PubMed
Koplan BA, Soejima K, Baughman K, Epstein LM, Stevenson WG. Refractory ventricular tachycardia secondary to cardiac sarcoid: electrophysiologic characteristics, mapping, and ablation. Heart Rhythm 2006; 3:924–929. PubMed
Papageorgiou N, Providência R, Bronis K, et al.Catheter ablation for ventricular tachycardia in patients with cardiac sarcoidosis: a systematic review. Europace 2018;20:682–691. PubMed
Sosa E, Scanavacca M, d’Avila A, Pilleggi F. A new technique to perform epicardial mapping in the electrophysiology laboratory. J Cardiovasc Electrophysiol 1996;7:531–536. PubMed
Sosa E, Scanavacca M, d’Avila A, et al.Endocardial and epicardial ablation guided by nonsurgical transthoracic epicardial mapping to treat recurrent ventricular tachycardia. J Cardiovasc Electrophysiol 1998;9:229–239. PubMed
Scanavacca M. Epicardial ablation for ventricular tachycardia in chronic Chagas heart disease. Arq Bras Cardiol 2014;102:524–528. PubMed PMC
Henz BD, do Nascimento TA, Dietrich CO, et al.Simultaneous epicardial and endocardial substrate mapping and radiofrequency catheter ablation as first-line treatment for ventricular tachycardia and frequent ICD shocks in chronic Chagasic cardiomyopathy. J Interv Card Electrophysiol 2009; 26:195–205. PubMed
Nademanee K, Veerakul G, Chandanamattha P, et al.Prevention of ventricular fibrillation episodes in Brugada syndrome by catheter ablation over the anterior right ventricular outfiow tract epicardium. Circulation 2011;123:1270–1279. PubMed
Szel T, Antzelevitch C. Abnormal repolarization as the basis for late potentials and fractionated electrograms recorded from epicardium in experimental models of Brugada syndrome. J Am Coll Cardiol 2014; 63:2037–2045. PubMed PMC
Brugada J, Pappone C, Berruezo A, et al.Brugada syndrome phenotype elimination by epicardial substrate ablation. Circ Arrhythm Electrophysiol 2015;8:1373–1381. PubMed
Fernandes GC, Fernandes A, Cardoso R, et al.Ablation strategies for the management of symptomatic Brugada syndrome: a systematic review. Heart Rhythm 2018;15:1140–1147. PubMed
Downar E, Parson ID, Mickleborough LL, Cameron DA, Yao LC, Waxman MB. On-line epicardial mapping of intraoperative ventricular arrhythmias: initial clinical experience. J Am Coll Cardiol 1984; 4:703–714. PubMed
Kaltenbrunner W, Cardinal R, Dubuc M, et al.Epicardial and endocardial mapping of ventricular tachycardia in patients with myocardial infarction. Is the origin of the tachycardia always subendocardially localized? Circulation 1991;84:1058–1071. PubMed
Littmann L, Svenson RH, Gallagher JJ, et al.Functional role of the epicardium in postinfarction ventricular tachycardia. Observations derived from computerized epicardial activation mapping, entrainment, and epicardial laser photoablation. Circulation 1991;83:1577–1591. PubMed
Blanchard SM, Walcott GP, Wharton JM, Ideker RE. Why is catheter ablation less successful than surgery for treating ventricular tachycardia that results from coronary artery disease? Pacing Clin Electrophysiol 1994; 17:2315–2335. PubMed
Gonska BD, Cao K, Schaumann A, Dorszewski A, von zur Mühlen F, Kreuzer H. Catheter ablation of ventricular tachycardia in 136 patients with coronary artery disease: results and long-term follow-up. J Am Coll Cardiol 1994;24:1506–1514. PubMed
Stevenson WG, Friedman PL, Kocovic D, Sager PT, Saxon LA, Pavri B. Radiofrequency catheter ablation of ventricular tachycardia after myocardial infarction. Circulation 1998;98:308–314. PubMed
Daniels DV, Lu YY, Morton JB, et al.Idiopathic epicardial left ventricular tachycardia originating remote from the sinus of Valsalva: electrophysiological characteristics, catheter ablation, and identification from the 12-lead electrocardiogram. Circulation 2006;113:1659–1666. PubMed
Doppalapudi H, Yamada T, Ramaswamy K, Ahn J, Kay GN. Idiopathic focal epicardial ventricular tachycardia originating from the crux of the heart. Heart Rhythm 2009;6:44–50. PubMed
Yamada T, McElderry HT, Doppalapudi H, et al.Idiopathic ventricular arrhythmias originating from the left ventricular summit: anatomic concepts relevant to ablation. Circ Arrhythm Electrophysiol 2010;3:616–623. PubMed
Yamada T, Doppalapudi H, Litovsky SH, McElderry HT, Kay GN. Challenging radiofrequency catheter ablation of idiopathic ventricular arrhythmias originating from the left ventricular summit near the left main coronary artery. Circ Arrhythm Electrophysiol 2016;9:e004202. PubMed
Tung R, Nakahara S, Ramirez R, Lai C, Fishbein MC, Shivkumar K. Distinguishing epicardial fat from scar: analysis of electrograms using high-density electroanatomic mapping in a novel porcine infarct model. Heart Rhythm 2010;7:389–395. PubMed PMC
Svenson RH, Littmann L, Gallagher JJ, et al.Termination of ventricular tachycardia with epicardial laser photocoagulation: a clinical comparison with patients undergoing successful endocardial photocoagulation alone. J Am Coll Cardiol 1990;15:163–170. PubMed
Soejima K, Stevenson WG, Sapp JL, Selwyn AP, Couper G, Epstein LM. Endocardial and epicardial radiofrequency ablation of ventricular tachycardia associated with dilated cardiomyopathy: the importance of low-voltage scars. J Am Coll Cardiol 2004;43:1834–1842. PubMed
Della Bella P, Brugada J, Zeppenfeld K, et al.Epicardial ablation for ventricular tachycardia: a European multicenter study. Circ Arrhythm Electrophysiol 2011;4:653–659. PubMed
Wijnmaalen AP, van der Geest RJ, van Huls van Taxis CF, et al.Head-to-head comparison of contrast-enhanced magnetic resonance imaging and electroanatomical voltage mapping to assess post-infarct scar characteristics in patients with ventricular tachycardias: real-time image integration and reversed registration. Eur Heart J 2011;32:104–114. PubMed
Andreu D, Berruezo A, Ortiz-Pérez JT, et al.Integration of 3D electroanatomic maps and magnetic resonance scar characterization into the navigation system to guide ventricular tachycardia ablation. Circ Arrhythm Electrophysiol 2011;4:674–683. PubMed
Berruezo A, Mont L, Nava S, Chueca E, Bartholomay E, Brugada J. Electrocardiographic recognition of the epicardial origin of ventricular tachycardias. Circulation 2004;109:1842–1847. PubMed
Martinek M, Stevenson WG, Inada K, Tokuda M, Tedrow UB. QRS characteristics fail to reliably identify ventricular tachycardias that require epicardial ablation in ischemic heart disease. J Cardiovasc Electrophysiol 2012;23:188–193. PubMed
Bazan V, Bala R, Garcia FC, et al.Twelve-lead ECG features to identify ventricular tachycardia arising from the epicardial right ventricle. Heart Rhythm 2006;3:1132–1139. PubMed
Bazan V, Gerstenfeld EP, Garcia FC, et al.Site-specific twelve-lead ECG features to identify an epicardial origin for left ventricular tachycardia in the absence of myocardial infarction. Heart Rhythm 2007;4:1403–1410. PubMed
Vallès E, Bazan V, Marchlinski FE. ECG criteria to identify epicardial ventricular tachycardia in nonischemic cardiomyopathy. Circ Arrhythm Electrophysiol 2010;3:63–71. PubMed
Bala R, Ren JF, Hutchinson MD, et al.Assessing epicardial substrate using intracardiac echocardiography during VT ablation. Circ Arrhythm Electrophysiol 2011;4:667–673. PubMed PMC
Gunda S, Reddy M, Pillarisetti J, et al.Differences in complication rates between large bore needle and a long micropuncture needle during epicardial access: time to change clinical practice? Circ Arrhythm Electrophysiol 2015;8:890–895. PubMed
Kumar S, Bazaz R, Barbhaiya CR, et al.“Needle-in-needle” epicardial access: preliminary observations with a modified technique for facilitating epicardial interventional procedures. Heart Rhythm 2015;12:1691–1697. PubMed
Cronin EM, Zweibel SL. Transatrial pericardial insufflation of carbon dioxide to facilitate percutaneous pericardial access for ablation of ventricular tachycardia. J Cardiovasc Electrophysiol 2016;27:615. PubMed
Silberbauer J, Gomes J, O’Nunain S, Kirubakaran S, Hildick-Smith D, McCready J. Coronary vein exit and carbon dioxide insufflation to facilitate subxiphoid epicardial access for ventricular mapping and ablation: first experience. JACC Clin Electrophysiol 2017;3:514–521. PubMed
d’Avila A, Houghtaling C, Gutierrez P, et al.Catheter ablation of ventricular epicardial tissue: a comparison of standard and cooled-tip radiofrequency energy. Circulation 2004;109:2363–2369. PubMed
Aryana A, O’Neill PG, Pujara DK, et al.Impact of irrigation flow rate and intrapericardial fluid on cooled-tip epicardial radiofrequency ablation. Heart Rhythm 2016;13:1602–1611. PubMed
Lustgarten DL, Bell S, Hardin N, Calame J, Spector PS. Safety and efficacy of epicardial cryoablation in a canine model. Heart Rhythm 2005; 2:82–90. PubMed
d’Avila A, Aryana A, Thiagalingam A, et al.Focal and linear endocardial and epicardial catheter-based cryoablation of normal and infarcted ventricular tissue. Pacing Clin Electrophysiol 2008;31:1322–1331. PubMed
Di Biase L, Al-Ahamad A, Santangeli P, et al.Safety and outcomes of cryoablation for ventricular tachyarrhythmias: results from a multicenter experience. Heart Rhythm 2011;8:968–974. PubMed
Sacher F, Wright M, Derval N, et al.Endocardial versus epicardial ventricular radiofrequency ablation: utility of in vivo contact force assessment. Circ Arrhythm Electrophysiol 2013;6:144–150. PubMed
Wong MC, Edwards G, Spence SJ, et al.Characterization of catheter-tissue contact force during epicardial radiofrequency ablation in an ovine model. Circ Arrhythm Electrophysiol 2013;6:1222–1228. PubMed
Jesel L, Sacher F, Komatsu Y, et al.Characterization of contact force during endocardial and epicardial ventricular mapping. Circ Arrhythm Electrophysiol 2014;7:1168–1173. PubMed
Saba MM, Akella J, Gammie J, et al.The influence of fat thickness on the human epicardial bipolar electrogram characteristics: measurements on patients undergoing open-heart surgery. Europace 2009;11:949–953. PubMed
Abbara S, Desai JC, Cury RC, Butler J, Nieman K, Reddy V. Mapping epicardial fat with multi-detector computed tomography to facilitate percutaneous transepicardial arrhythmia ablation. Eur J Radiol 2006; 57:417–422. PubMed
Silaghi A, Piercecchi-Marti MD, Grino M, et al.Epicardial adipose tissue extent: relationship with age, body fat distribution, and coronaropathy. Obesity (Silver Spring) 2008;16:2424–2430. PubMed
Ahn SG, Lim HS, Joe DY, et al.Relationship of epicardial adipose tissue by echocardiography to coronary artery disease. Heart 2008;94:e7. PubMed
Hong KN, Russo MJ, Liberman EA, et al.Effect of epicardial fat on ablation performance: a three-energy source comparison. J Card Surg 2007; 22:521–524. PubMed
Desjardins B, Morady F, Bogun F. Effect of epicardial fat on electroanatomical mapping and epicardial catheter ablation. J Am Coll Cardiol 2010;56:1320–1327. PubMed
Koruth JS, Aryana A, Dukkipati SR, et al.Unusual complications of percutaneous epicardial access and epicardial mapping and ablation of cardiac arrhythmias. Circ Arrhythm Electrophysiol 2011;4:882–888. PubMed
Kumar S, Barbhaiya CR, Baldinger SH, et al.Epicardial phrenic nerve displacement during catheter ablation of atrial and ventricular arrhythmias: procedural experience and outcomes. Circ Arrhythm Electrophysiol 2015; 8:896–904. PubMed
Yamada T, McElderry HT, Platonov M, Doppalapudi H, Kay GN. Aspirated air in the pericardial space during epicardial catheterization may elevate the defibrillation threshold. Int J Cardiol 2009;135:e34–e35. PubMed
de Moura EG, Silva GL, de Moura ET, et al.Esophageal perforation after epicardial ablation: an endoscopic approach. Endoscopy 2015; 47:E592–E593. PubMed
Koruth JS, Chu EW, Bhardwaj R, Dukkipati S, Reddy VY. Esophageal damage during epicardial ventricular tachycardia ablation. JACC Clin Electrophysiol 2017;3:1470–1471. PubMed
Pisani CF, de Medeiros Lopes MAA, Bellotti H, Kopel L, Lage SG, Scanavacca MI. Oesophagopleural fistula following epicardial ventricular tachycardia catheter ablation. Europace 2018;20:672. PubMed
Miller MA, Dukkipati SR, Mittnacht AJ, et al.Activation and entrainment mapping of hemodynamically unstable ventricular tachycardia using a percutaneous left ventricular assist device. J Am Coll Cardiol 2011;58:1363–1371. PubMed
Reddy YM, Chinitz L, Mansour M, et al.Percutaneous left ventricular assist devices in ventricular tachycardia ablation: multicenter experience. Circ Arrhythm Electrophysiol 2014;7:244–250. PubMed PMC
Baratto F, Pappalardo F, Oloriz T, et al.Extracorporeal membrane oxygenation for hemodynamic support of ventricular tachycardia ablation. Circ Arrhythm Electrophysiol 2016;9:e004492. PubMed
Kusa S, Miller MA, Whang W, et al.Outcomes of ventricular tachycardia ablation using percutaneous left ventricular assist devices. Circ Arrhythm Electrophysiol 2017;10:e004717. PubMed
Mathuria N, Wu G, Rojas-Delgado F, et al.Outcomes of pre-emptive and rescue use of percutaneous left ventricular assist device in patients with structural heart disease undergoing catheter ablation of ventricular tachycardia. J Interv Card Electrophysiol 2017;48:27–34. PubMed
Turagam MK, Vuddanda V, Atkins D, et al.Hemodynamic support in ventricular tachycardia ablation: an International VT Ablation Center Collaborative Group Study. JACC Clin Electrophysiol 2017; 3:1534–1543. PubMed
Enriquez A, Liang J, Gentile J, et al.Outcomes of rescue cardiopulmonary support for periprocedural acute hemodynamic decompensation in patients undergoing catheter ablation of electrical storm. Heart Rhythm 2018; 15:75–80. PubMed
Santangeli P, Muser D, Zado ES, et al.Acute hemodynamic decompensation during catheter ablation of scar-related ventricular tachycardia: incidence, predictors, and impact on mortality. Circ Arrhythm Electrophysiol 2015; 8:68–75. PubMed
Della Bella P, Baratto F, Tsiachris D, et al.Management of ventricular tachycardia in the setting of a dedicated unit for the treatment of complex ventricular arrhythmias: long-term outcome after ablation. Circulation 2013; 127:1359–1368. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl J Med 2007;357:2657–2665. PubMed PMC
Kuck KH, Schaumann A, Eckardt L, et al.; VTACH Study Group. Catheter ablation of stable ventricular tachycardia before defibrillator implantation in patients with coronary heart disease (VTACH): a multicentre randomised controlled trial. Lancet 2010;375:31–40. PubMed
Al-Khatib SM, Daubert JP, Anstrom KJ, et al.Catheter ablation for ventricular tachycardia in patients with an implantable cardioverter defibrillator (CALYPSO) pilot trial. J Cardiovasc Electrophysiol 2015;26:151–157. PubMed
Sapp JL, Wells GA, Parkash R, et al.Ventricular tachycardia ablation versus escalation of antiarrhythmic drugs. N Engl J Med 2016;375:111–121. PubMed
Kuck KH, Tilz RR, Deneke T, et al.; SMS Investigators. Impact of substrate modification by catheter ablation on implantable cardioverter-defibrillator interventions in patients with unstable ventricular arrhythmias and coronary artery disease: results from the multicenter randomized controlled SMS (Substrate Modification Study). Circ Arrhythm Electrophysiol 2017; 10:e004422. PubMed
Calkins H, Epstein A, Packer D, et al.Catheter ablation of ventricular tachycardia in patients with structural heart disease using cooled radiofrequency energy: results of a prospective multicenter study. Cooled RF Multi Center Investigators Group. J Am Coll Cardiol 2000;35:1905–1914. PubMed
Siontis KC, Jamé S, Sharaf Dabbagh G, et al.Thromboembolic prophylaxis protocol with warfarin after radiofrequency catheter ablation of infarct-related ventricular tachycardia. J Cardiovasc Electrophysiol 2018; 29:584–590. PubMed
Tanner H, Hindricks G, Volkmer M, et al.Catheter ablation of recurrent scar-related ventricular tachycardia using electroanatomical mapping and irrigated ablation technology: results of the prospective multicenter Euro-VT-study. J Cardiovasc Electrophysiol 2010;21:47–53. PubMed
Peichl P, Wichterle D, Pavlu L, Cihak R, Aldhoon B, Kautzner J. Complications of catheter ablation of ventricular tachycardia: a single-center experience. Circ Arrhythm Electrophysiol 2014;7:684–690. PubMed
Whitman IR, Gladstone RA, Badhwar N, et al.Brain emboli after left ventricular endocardial ablation. Circulation 2017;135:867–877. PubMed
Baetz BE, Gerstenfeld EP, Kolansky DM, Spinler SA. Bivalirudin use during radiofrequency catheter ablation procedures in two patients with a history of heparin-induced thrombocytopenia. Pharmacotherapy 2010;30:952. PubMed
Di Biase L, Burkhardt JD, Lakkireddy D, et al.Ablation of stable VTs versus substrate ablation in ischemic cardiomyopathy: the VISTA randomized multicenter trial. J Am Coll Cardiol 2015;66:2872–2882. PubMed
Di Biase L, Santangeli P, Burkhardt DJ, et al.Endo-epicardial homogenization of the scar versus limited substrate ablation for the treatment of electrical storms in patients with ischemic cardiomyopathy. J Am Coll Cardiol 2012; 60:132–141. PubMed
Page SP, Duncan ER, Thomas G, et al.Epicardial catheter ablation for ventricular tachycardia in heparinized patients. Europace 2013;15:284–289. PubMed
Sawhney V, Breitenstein A, Ullah W, et al.Epicardial catheter ablation for ventricular tachycardia on uninterrupted warfarin: a safe approach for those with a strong indication for peri-procedural anticoagulation? Int J Cardiol 2016;222:57–61. PubMed
Wilson W, Taubert KA, Gewitz M, et al.Prevention of infective endocarditis: guidelines from the American Heart Association: a guideline from the American Heart Association Rheumatic Fever, Endocarditis, and Kawasaki Disease Committee, Council on Cardiovascular Disease in the Young, and the Council on Clinical Cardiology, Council on Cardiovascular Surgery and Anesthesia, and the Quality of Care and Outcomes Research Interdisciplinary Working Group. Circulation 2007;116:1736–1754. PubMed
Lerman BB, Belardinelli L, West GA, Berne RM, DiMarco JP. Adenosine-sensitive ventricular tachycardia: evidence suggesting cyclic AMP-triggered activity. Circulation 1986;74:270–280. PubMed
Lerman BB. Mechanism, diagnosis and treatment of outflow tract tachycardia. Nat Rev Cardiol 2015;12:597–608. PubMed
Buxton AE, Waxman HL, Marchlinski FE, Untereker WJ, Waspe LE, Josephson ME. Role of triple ventricular extrastimuli during electrophysiologic study of patients with documented sustained ventricular arrhythmias. Circulation 1984;69:532–540. PubMed
Hummel JD, Strickberger SA, Daoud E, et al.Results and efficiency of programmed ventricular stimulation with four extrastimuli compared with one, two and three extrastimuli. Circulation 1994;90:2827–2832. PubMed
Josephson ME. Clinical Cardiac Electrophysiology: Techniques and Interpretations, 5th ed. Philadelphia: Wolters Kluwer; 2015, Chapter 11, p. 479.
Yoshida K, Liu TY, Scott C, et al.The value of defibrillator electrograms for recognition of clinical ventricular tachycardias and for pace mapping of postinfarction ventricular tachycardia. J Am Coll Cardiol 2010;56:969–979. PubMed
de Riva M, Piers SR, Kapel GF, et al.Reassessing noninducibility as ablation endpoint of post-infarction ventricular tachycardia: the impact of left ventricular function. Circ Arrhythm Electrophysiol 2015;8:853–862. PubMed
Silberbauer J, Oloriz T, Maccabelli G, et al.Noninducibility and late potential abolition: a novel combined prognostic procedural end point for catheter ablation of postinfarction ventricular tachycardia. Circ Arrhythm Electrophysiol 2014;7:424–435. PubMed
Wolf M, Sacher F, Cochet H, et al.Long-term outcome of substrate modification in ablation of post-myocardial infarction ventricular tachycardia. Circ Arrhythm Electrophysiol 2018;11:e005635. PubMed
Kuck KH, Tilz RR, Deneke T, et al.Impact of substrate modification by catheter ablation on implantable cardioverter-defibrillator interventions in patients with unstable ventricular arrhythmias and coronary artery disease: results from the multicenter randomized controlled SMS (Substrate Modification Study). Circ Arrhythm Electrophysiol 2017;10:e004422. PubMed
Ghanbari H, Baser K, Yokokawa M, et al.Noninducibility in postinfarction ventricular tachycardia as an end point for ventricular tachycardia ablation and its effects on outcomes: a meta-analysis. Circ Arrhythm Electrophysiol 2014;7:677–683. PubMed
Yokokawa M, Kim HM, Baser K, et al.Predictive value of programmed ventricular stimulation after catheter ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2015;65:1954–1959. PubMed
Rothman SA, Hsia HH, Cossu SF, Chmielewski IL, Buxton AE, Miller JM. Radiofrequency catheter ablation of postinfarction ventricular tachycardia: long-term success and the significance of inducible nonclinical arrhythmias. Circulation 1997;96:3499–3508. PubMed
Frankel DS, Mountantonakis SE, Zado ES, et al.Noninvasive programmed ventricular stimulation early after ventricular tachycardia ablation to predict risk of late recurrence. J Am Coll Cardiol 2012;59:1529–1535. PubMed
Piers SR, Leong DP, van Huls van Taxis CF, et al.Outcome of ventricular tachycardia ablation in patients with nonischemic cardiomyopathy: the impact of noninducibility. Circ Arrhythm Electrophysiol 2013;6:513–521. PubMed
Lerman BB. Response of nonreentrant catecholamine-mediated ventricular tachycardia to endogenous adenosine and acetycholine: evidence for myocardial receptor-mediated effects. Circulation 1993;87:382–390. PubMed
Tschabrunn CM, Roujol S, Dorman NC, Nezafat R, Josephson ME, Anter E. High-resolution mapping of ventricular scar: comparison between single and multielectrode catheters. Circ Arrhythm Electrophysiol 2016;9:e003841. PubMed PMC
Leshem E, Tschabrunn CM, Jang J, et al.High-resolution mapping of ventricular scar: evaluation of a novel integrated multielectrode mapping and ablation catheter. JACC Clin Electrophysiol 2017;3:220–231. PubMed
Berte B, Relan J, Sacher F, et al.Impact of electrode type on mapping of scar-related VT. J Cardiovasc Electrophysiol 2015;26:1213–1223. PubMed
Anter E, Tschabrunn CM, Josephson ME. High-resolution mapping of scar-related atrial arrhythmias using smaller electrodes with closer interelectrode spacing. Circ Arrhythm Electrophysiol 2015;8:537–545. PubMed
Anter E, Tschabrunn CM, Buxton AE, Josephson ME. High-resolution mapping of postinfarction reentrant ventricular tachycardia: electrophysiological characterization of the circuit. Circulation 2016;134:314–327. PubMed PMC
Josephson ME, Anter E. Substrate mapping for ventricular tachycardia: assumptions and misconceptions. JACC Clin Electrophysiol 2015; 1:341–352. PubMed
Ciaccio EJ, Coromilas J, Wit AL, Peters NS, Garan H. Formation of reentrant circuits in the mid-myocardial infarct border zone. Comput Biol Med 2016;71:205–213. PubMed
Tung R, Nakahara S, Maccabelli G, et al.Ultra high-density multipolar mapping with double ventricular access: a novel technique for ablation of ventricular tachycardia. J Cardiovasc Electrophysiol 2011;22:49–56. PubMed
Tung R, Nakahara S, Ramirez R, et al.Accuracy of combined endocardial and epicardial electroanatomic mapping of a reperfused porcine infarct model: a comparison of electrofield and magnetic systems with histopathologic correlation. Heart Rhythm 2011;8:439–447. PubMed
Magtibay K, Massé S, Asta J, et al.Physiological assessment of ventricular myocardial voltage using omnipolar electrograms. J Am Heart Assoc 2017;6:e006447. PubMed PMC
Viswanathan K, Mantziari L, Butcher C, et al.Evaluation of a novel high-resolution mapping system for catheter ablation of ventricular arrhythmias. Heart Rhythm 2017;14:176–183. PubMed
Josephson ME. Recurrent ventricular tachycardia, Clinical Cardiac Electrophysiology: Techniques and Interpretations, 5th ed. Philadelphia: Wolters Kluwer; 2015.
Josephson ME, Anter E. Substrate mapping for ventricular tachycardia: assumptions and misconceptions. JACC Clin Electrophysiol 2015; 1:341–352. PubMed
Miller JM, Harken AH, Hargrove WC, Josephson ME. Pattern of endocardial activation during sustained ventricular tachycardia. J Am Coll Cardiol 1985; 6:1280–1287. PubMed
Anter E, Tschabrunn CM, Buxton AE, Josephson ME. High-resolution mapping of postinfarction reentrant ventricular tachycardia: electrophysiological characterization of the circuit. Circulation 2016;134:314–327. PubMed PMC
Miller MA, Dukkipati SR, Mittnacht AJ, et al.Activation and entrainment mapping of hemodynamically unstable ventricular tachycardia using a percutaneous left ventricular assist device. J Am Coll Cardiol 2011;58:1363–1371. PubMed
Turagam MK, Vuddanda V, Atkins D, et al.Hemodynamic support in ventricular tachycardia ablation: an International VT Ablation Center Collaborative Group Study. JACC Clin Electrophysiol 2017;3:1534–1543. PubMed
Stevenson WG, Friedman PL, Sager PT, et al.Exploring postinfarction reentrant ventricular tachycardia with entrainment mapping. J Am Coll Cardiol 1997;29:1180–1189. PubMed
Kadish AH, Childs K, Schmaltz S, Morady F. Differences in QRS configuration during unipolar pacing from adjacent sites: implications for the spatial resolution of pace-mapping. J Am Coll Cardiol 1991; 17:143–151. PubMed
Kalbfleisch SJ, Sousa J, el-Atassi R, Calkins H, Langberg J, Morady F. Repolarization abnormalities after catheter ablation of accessory atrioventricular connections with radiofrequency current. J Am Coll Cardiol 1991; 18:1761–1766. PubMed
Morady F, Kadish A, Rosenheck S, et al.Concealed entrainment as a guide for catheter ablation of ventricular tachycardia in patients with prior myocardial infarction. J Am Coll Cardiol 1991;17:678–689. PubMed
Fontaine G, Frank R, Tonet J, Grosgogeat Y. Identification of a zone of slow conduction appropriate for VT ablation: theoretical and practical considerations. Pacing Clin Electrophysiol 1989;12:262–267. PubMed
Stevenson WG, Khan H, Sager P, et al.Identification of reentry circuit sites during catheter mapping and radiofrequency ablation of ventricular tachycardia late after myocardial infarction. Circulation 1993; 88:1647–1670. PubMed
Bogun F, Kim HM, Han J, et al.Comparison of mapping criteria for hemodynamically tolerated, postinfarction ventricular tachycardia. Heart Rhythm 2006;3:20–26. PubMed
Bogun F, Bahu M, Knight B, et al.Response to pacing at sites of isolated diastolic potentials during ventricular tachycardia in patients with previous myocardial infarction. J Am Coll Cardiol 1997;30:505–513. PubMed
Bogun F, Knight B, Goyal R, et al.Discrete systolic potentials during ventricular tachycardia in patients with prior myocardial infarction. J Cardiovasc Electrophysiol 1999;10:364–369. PubMed
Tung S, Soejima K, Maisel WH, Suzuki M, Epstein L, Stevenson WG. Recognition of far-field electrograms during entrainment mapping of ventricular tachycardia. J Am Coll Cardiol 2003;42:110–115. PubMed
Sarrazin JF, Kuehne M, Wells D, et al.High-output pacing in mapping of postinfarction ventricular tachycardia. Heart Rhythm 2008;5:1709–1714. PubMed
Stevenson WG, Weiss J, Wiener I, Wohlgelernter D, Yeatman L. Localization of slow conduction in a ventricular tachycardia circuit: implications for catheter ablation. Am Heart J 1987;114:1253–1258. PubMed
El-Shalakany A, Hadjis T, Papageorgiou P, Monahan K, Epstein L, Josephson ME. Entrainment/mapping criteria for the prediction of termination of ventricular tachycardia by single radiofrequency lesion in patients with coronary artery disease. Circulation 1999;99:2283–2289. PubMed
Kumar S, Baldinger SH, Romero J, et al.Substrate-based ablation versus ablation guided by activation and entrainment mapping for ventricular tachycardia: a systematic review and meta-analysis. J Cardiovasc Electrophysiol 2016;27:1437–1447. PubMed
Gerstenfeld EP, Dixit S, Callans DJ, Rajawat Y, Rho R, Marchlinski FE. Quantitative comparison of spontaneous and paced 12-lead electrocardiogram during right ventricular outflow tract ventricular tachycardia. J Am Coll Cardiol 2003;41:2046–2053. PubMed
Kurosaki K, Nogami A, Sakamaki M, et al.Automated template matching to pinpoint the origin of right ventricular outflow tract tachycardia. Pacing Clin Electrophysiol 2009;32:S47–S51. PubMed
De Chillou C, Groben L, Magnin-Poull I, et al.Localizing the critical isthmus of postinfarct ventricular tachycardia: the value of pace-mapping during sinus rhythm. Heart Rhythm 2014;11:175–181. PubMed
Calkins H, Kalbfleisch SJ, El-atassi R, Langberg JJ, Morady F. Relation between efficacy of radiofrequency catheter ablation and site of origin of idiopathic ventricular tachycardia. Am J Cardiol 1993;71:827–833. PubMed
Bogun F, Taj M, Ting M, et al.Spatial resolution of pace mapping of idiopathic ventricular tachycardia/ectopy originating in the right ventricular outflow tract. Heart Rhythm 2008;5:339–344. PubMed
Brunckhorst CB, Stevenson WG, Soejima K, et al.Relationship of slow conduction detected by pace-mapping to ventricular tachycardia re-entry circuit sites after infarction. J Am Coll Cardiol 2003;41:802–809. PubMed
Stevenson WG, Sager PT, Natterson PD, Saxon LA, Middlekauff HR, Wiener I. Relation of pace mapping QRS configuration and conduction delay to ventricular tachycardia reentry circuits in human infarct scars. J Am Coll Cardiol 1995;26:481–488. PubMed
Brunckhorst CB, Delacretaz E, Soejima K, Maisel WH, Friedman PL, Stevenson WG. Identification of the ventricular tachycardia isthmus after infarction by pace mapping. Circulation 2004;110:652–659. PubMed
Bogun F, Good E, Reich S, et al.Isolated potentials during sinus rhythm and pace-mapping within scars as guides for ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2006;47:2013–2019. PubMed
Bogun F, Bahu M, Knight BP, et al.Response to pacing at sites of isolated diastolic potentials during ventricular tachycardia in patients with previous myocardial infarction. J Am Coll Cardiol 1997;30:505–513. PubMed
Josephson ME, Waxman HL, Cain ME, Gardner MJ, Buxton AE. Ventricular activation during ventricular endocardial pacing: II. Role of pace-mapping to localize origin of ventricular tachycardia. Am J Cardiol 1982; 50:11–22. PubMed
Goyal R, Harvey M, Daoud EG, et al.Effect of coupling interval and pacing cycle length on morphology of paced ventricular complexes. Circulation 1996;94:2843–2849. PubMed
Yoshida K, Liu TY, Scott C, et al.The value of defibrillator electrograms for recognition of clinical ventricular tachycardias and for pace mapping of postinfarction ventricular tachycardia. J Am Coll Cardiol 2010;56:969–979. PubMed
Azegami K, Wilber DJ, Arruda M, Lin AC, Denman RA. Spatial resolution of pacemapping and activation mapping in patients with idiopathic right ventricular outflow tract tachycardia. J Cardiovasc Electrophysiol 2005; 16:823–829. PubMed
Soejima K, Stevenson WG, Maisel WH, Sapp JL, Epstein LM. Electrically unexcitable scar mapping based on pacing threshold for identification of the reentry circuit isthmus: feasibility for guiding ventricular tachycardia ablation. Circulation 2002;106:1678–1683. PubMed
Kadish AH, Schmaltz S, Morady F. A comparison of QRS complexes resulting fromunipolar and bipolar pacing: implications for pace-mapping. Pacing Clin Electrophysiol 1991;14:823–832. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl J Med 2007; 357:2657–2665. PubMed PMC
Di Biase L, Burkhardt JD, Lakkireddy D, et al.Ablation of stable VTs versus substrate ablation in ischemic cardiomyopathy: the VISTA randomized multicenter trial. J Am Coll Cardiol 2015;66:2872–2882. PubMed
Calkins H, Epstein A, Packer D, et al.Catheter ablation of ventricular tachycardia in patients with structural heart disease using cooled radiofrequency energy: results of a prospective multicenter study. Cooled RF Multi Center Investigators Group. J Am Coll Cardiol 2000;35:1905–1914. PubMed
Stevenson WG, Wilber DJ, Natale A, et al.Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Sapp JL, Wells GA, Parkash R, et al.Ventricular tachycardia ablation versus escalation of antiarrhythmic drugs. N Engl J Med 2016; 375:111–121. PubMed
Kuck K-H, Tilz RR, Deneke T, et al.Impact of substrate modification by catheter ablation on implantable cardioverter-defibrillator interventions in patients with unstable ventricular arrhythmias and coronary artery disease: results from the multicenter randomized controlled SMS (Substrate Modification Study). Circ Arrhythm Electrophysiol 2017; 10:e004422. PubMed
Volkmer M, Ouyang F, Deger F, et al.Substrate mapping vs. tachycardia mapping using CARTO in patients with coronary artery disease and ventricular tachycardia: impact on outcome of catheter ablation. Europace 2006;8:968–976. PubMed
Makimoto H, Nakajima I, Miyamoto K, et al.Clinical impact of mapping strategies for treatment of ventricular tachycardias in patients with structural heart disease. Pacing Clin Electrophysiol 2015;38:630–640. PubMed
Carbucicchio C, Ahmad Raja N, Di Biase L, et al.High-density substrate-guided ventricular tachycardia ablation: role of activation mapping in an attempt to improve procedural effectiveness. Heart Rhythm 2013; 10:1850–1858. PubMed
Briceño DF, Romero J, Villablanca PA, et al.Long-term outcomes of different ablation strategies for ventricular tachycardia in patients with structural heart disease: systematic review and meta-analysis. Europace 2018;20:104–115. PubMed
Kumar S, Baldinger SH, Romero J, et al.Substrate-based ablation versus ablation guided by activation and entrainment mapping for ventricular tachycardia: a systematic review and meta-analysis. J Cardiovasc Electrophysiol 2016;27:1437–1447. PubMed
Acosta J, Penela D, Andreu D, et al.Multielectrode vs. point-by-point mapping for ventricular tachycardia substrate ablation: a randomized study. Europace 2018;20:512–519. PubMed
Berte B, Relan J, Sacher F, et al.Impact of electrode type on mapping of scar-related VT. J Cardiovasc Electrophysiol 2015;26:1213–1223. PubMed
Yamashita S, Cochet H, Sacher F, et al.Impact of new technologies and approaches for post-myocardial infarction ventricular tachycardia ablation during long-term follow-up. Circ Arrhythm Electrophysiol 2016; 9:e003901. PubMed
Hutchinson MD, Gerstenfeld EP, Desjardins B, et al.Endocardial unipolar voltage mapping to detect epicardial ventricular tachycardia substrate in patients with nonischemic left ventricular cardiomyopathy. Circ Arrhythmia Electrophysiol 2011;4:49–55. PubMed PMC
Polin GM, Haqqani H, Tzou W, et al.Endocardial unipolar voltage mapping to identify epicardial substrate in arrhythmogenic right ventricular cardiomyopathy/dysplasia. Heart Rhythm 2011;8:76–83. PubMed
Chopra N, Tokuda M, Ng J, et al.Relation of the unipolar low-voltage penumbra surrounding the endocardial low-voltage scar to ventricular tachycardia circuit sites and ablation outcomes in ischemic cardiomyopathy. J Cardiovasc Electrophysiol 2014;25:602–608. PubMed
Soto-Becerra R, Bazan V, Bautista W, et al.Ventricular tachycardia in the setting of Chagasic cardiomyopathy. Circ Arrhythm Electrophysiol 2017; 10:e004950. PubMed
Desjardins B, Yokokawa M, Good E, et al.Characteristics of intramural scar in patients with nonischemic cardiomyopathy and relation to intramural ventricular arrhythmias. Circ Arrhythm Electrophysiol 2013; 6:891–897. PubMed
Stevenson WG, Friedman PL, Kocovic D, Sager PT, Saxon LA, Pavri B. Radiofrequency catheter ablation of ventricular tachycardia after myocardial infarction. Circulation 1998;98:308–314. PubMed
Miller JM, Kienzle MG, Harken AH, Josephson ME. Subendocardial resection for ventricular tachycardia: predictors of surgical success. Circulation 1984;70:624–631. PubMed
de Bakker JM, van Capelle FJ, Janse MJ, et al.Slow conduction in the infarcted human heart. ‘Zigzag’ course of activation. Circulation 1993; 88:915–926. PubMed
Callans DJ, Ren JF, Michele J, Marchlinski FE, Dillon SM. Electroanatomic left ventricular mapping in the porcine model of healed anterior myocardial infarction: correlation with intracardiac echocardiography and pathological analysis. Circulation 1999;100:1744–1750. PubMed
Marchlinski FE, Callans DJ, Gottlieb CD, Zado E. Linear ablation lesions for control of unmappable ventricular tachycardia in patients with ischemic and nonischemic cardiomyopathy. Circulation 2000;101:1288–1296. PubMed
Soejima K, Stevenson WG, Maisel WH, Sapp JL, Epstein LM. Electrically unexcitable scar mapping based on pacing threshold for identification of the reentry circuit isthmus: feasibility for guiding ventricular tachycardia ablation. Circulation 2002;106:1678–1683. PubMed
Glashan CA, Androulakis AFA, Tao Q, et al.Whole human heart histology to validate electroanatomical voltage mapping in patients with nonischaemic cardiomyopathy and ventricular tachycardia. Eur Heart J 2018;39:2867–2875. PubMed
Tung R, Josephson ME, Bradfield JS, Shivkumar K. Directional influences of ventricular activation on myocardial scar characterization: voltage mapping with multiple wavefronts during ventricular tachycardia ablation. Circ Arrhythm Electrophysiol 2016;9:e004155. PubMed
Santangeli P, Marchlinski FE. Substrate mapping for unstable ventricular tachycardia. Heart Rhythm 2016;13:569–583. PubMed
Arenal A, Glez-Torrecilla E, Ortiz M, et al.Ablation of electrograms with an isolated, delayed component as treatment of unmappable monomorphic ventricular tachycardias in patients with structural heart disease. J Am Coll Cardiol 2003;41:81–92. PubMed
Bogun F, Good E, Reich S, et al.Isolated potentials during sinus rhythm and pace-mapping within scars as guides for ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2006;47:2013–2019. PubMed
Nogami A, Sugiyasu A, Tada H, et al.Changes in the isolated delayed component as an endpoint of catheter ablation in arrhythmogenic right ventricular cardiomyopathy: predictor for long-term success. J Cardiovasc Electrophysiol 2008;19:681–688. PubMed
Vergara P, Trevisi N, Ricco A, et al.Late potentials abolition as an additional technique for reduction of arrhythmia recurrence in scar related ventricular tachycardia ablation. J Cardiovasc Electrophysiol 2012; 23:621–627. PubMed
Mountantonakis SE, Park RE, Frankel DS, et al.Relationship between voltage map “channels” and the location of critical isthmus sites in patients with post-infarction cardiomyopathy and ventricular tachycardia. J Am Coll Cardiol 2013;61:2088–2095. PubMed
Josephson ME, Anter E. Substrate mapping for ventricular tachycardia assumptions and misconceptions. JACC Clin Electrophysiol 2015; 1:341–352. PubMed
Jaïs P, Maury P, Khairy P, et al.Elimination of local abnormal ventricular activities: a new end point for substrate modification in patients with scar-related ventricular tachycardia. Circulation 2012;125:2184–2196. PubMed
Acosta J, Andreu D, Penela D, et al.Elucidation of hidden slow conduction by double ventricular extrastimuli: a method for further arrhythmic substrate identification in ventricular tachycardia ablation procedures. Europace 2018;20:337–346. PubMed
Porta-Sánchez A, Jackson N, Lukac P, et al.Multicenter study of ischemic ventricular tachycardia ablation with decrement-evoked potential (DEEP) mapping with extra stimulus. JACC Clin Electrophysiol 2018;4:307–315. PubMed
de Riva M, Naruse Y, Ebert M, et al.Targeting the hidden substrate unmasked by right ventricular extrastimulation improves ventricular tachycardia ablation outcome after myocardial infarction. JACC Clin Electrophysiol 2018;4:316–327. PubMed
Nakahara S, Tung R, Ramirez RJ, et al.Distribution of late potentials within infarct scars assessed by ultra high-density mapping. Heart Rhythm 2010;7:1817–1824. PubMed
Irie T, Yu R, Bradfield JS, et al.Relationship between sinus rhythm late activation zones and critical sites for scar-related ventricular tachycardia: systematic analysis of isochronal late activation mapping. Circ Arrhythm Electrophysiol 2015;8:390–399. PubMed PMC
Berruezo A, Fernández-Armenta J, Andreu D, et al.Scar dechanneling: new method for scar-related left ventricular tachycardia substrate ablation. Circ Arrhythm Electrophysiol 2015;8:326–336. PubMed
Tilz RR, Makimoto H, Lin T, et al.Electrical isolation of a substrate after myocardial infarction: a novel ablation strategy for unmappable ventricular tachycardias—feasibility and clinical outcome. Europace 2014; 16:1040–1052. PubMed
Tzou WS, Frankel DS, Hegeman T, et al.Core isolation of critical arrhythmia elements for treatment of multiple scar-based ventricular tachycardias. Circ Arrhythm Electrophysiol 2015;8:353–361. PubMed
Di Biase L, Santangeli P, Burkhardt DJ, et al.Endo-epicardial homogenization of the scar versus limited substrate ablation for the treatment of electrical storms in patients with ischemic cardiomyopathy. J Am Coll Cardiol 2012;60:132–141. PubMed
Ouyang F,Fotuhi P,Ho SY,et al..Repetitivemonomorphicventriculartachycardia originating from the aortic sinus cusp: electrocardiographic characterization for guiding catheter ablation. J Am Coll Cardiol 2002;39:500–508. PubMed
Hoffmayer KS, Dewland TA, Hsia HH, et al.Safety of radiofrequency catheter ablation without coronary angiography in aortic cusp ventricular arrhythmias. Heart Rhythm 2014;11:1117–1121. PubMed
Hachiya H, Aonuma K, Yamauchi Y, Igawa M, Nogami A, Iesaka Y. How to diagnose, locate, and ablate coronary cusp ventricular tachycardia. J Cardiovasc Electrophysiol 2002;13:551–556. PubMed
Yamada T, McElderry HT, Doppalapudi H, et al.Idiopathic ventricular arrhythmias originating from the aortic root prevalence, electrocardiographic and electrophysiologic characteristics, and results of radiofrequency catheter ablation. J Am Coll Cardiol 2008;52:139–147. PubMed
Baman TS, Ilg KJ, Gupta SK, et al.Mapping and ablation of epicardial idiopathic ventricular arrhythmias from within the coronary venous system. Circ Arrhythm Electrophysiol 2010;3:274–279. PubMed
Yokokawa M, Latchamsetty R, Good E, et al.Ablation of epicardial ventricular arrhythmias from nonepicardial sites. Heart Rhythm 2011; 8:1525–1529. PubMed
D’Avila A, Gutierrez P, Scanavacca M, et al.Effects of radiofrequency pulses delivered in the vicinity of the coronary arteries: implications for nonsurgical transthoracic epicardial catheter ablation to treat ventricular tachycardia. Pacing Clin Electrophysiol 2002;25:1488–1495. PubMed
Sacher F, Roberts-Thomson K, Maury P, et al.Epicardial ventricular tachycardia ablation a multicenter safety study. J Am Coll Cardiol 2010; 55:2366–2372. PubMed
Good E, Desjardins B, Jongnarangsin K, et al.Ventricular arrhythmias originating from a papillary muscle in patients without prior infarction: a comparison with fascicular arrhythmias. Heart Rhythm 2008; 5:1530–1537. PubMed
Yokokawa M, Good E, Desjardins B, et al.Predictors of successful catheter ablation of ventricular arrhythmias arising from the papillary muscles. Heart Rhythm 2010;7:1654–1659. PubMed PMC
Yamada T, McElderry HT, Okada T, et al.Idiopathic focal ventricular arrhythmias originating from the anterior papillary muscle in the left ventricle. J Cardiovasc Electrophysiol 2009;20:866–872. PubMed
Yamada T, Doppalapudi H, McElderry HT, et al.Electrocardiographic and electrophysiological characteristics in idiopathic ventricular arrhythmias originating from the papillary muscles in the left ventricle: relevance for catheter ablation. Circ Arrhythm Electrophysiol 2010; 3:324–331. PubMed
Yamada T, Doppalapudi H, McElderry HT, et al.Idiopathic ventricular arrhythmias originating from the papillary muscles in the left ventricle: prevalence, electrocardiographic and electrophysiological characteristics, and results of the radiofrequency catheter ablation. J Cardiovasc Electrophysiol 2010;21:62–69. PubMed
Bassil G, Liu CF, Markowitz SM, et al.Comparison of robotic magnetic navigation-guided and manual catheter ablation of ventricular arrhythmias arising from the papillary muscles. Europace 2018;20:ii5–ii10. PubMed
Ban JE, Lee HS, Lee DI, et al.Electrophysiological characteristics related to outcome after catheter ablation of idiopathic ventricular arrhythmia originating from the papillary muscle in the left ventricle. Korean Circ J 2013;43:811–818. PubMed PMC
Crawford T, Mueller G, Good E, et al.Ventricular arrhythmias originating from papillary muscles in the right ventricle. Heart Rhythm 2010; 7:725–730. PubMed
Rivera S, Ricapito Mde L, Tomas L, et al.Results of cryoenergy and radiofrequency-based catheter ablation for treating ventricular arrhythmias arising from the papillary muscles of the left ventricle, guided by intracardiac echocardiography and image integration. Circ Arrhythm Electrophysiol 2016;9:e003874. PubMed
Proietti R, Rivera S, Dussault C, et al.Intracardiac echo-facilitated 3D electroanatomical mapping of ventricular arrhythmias from the papillary muscles: assessing the ‘fourth dimension’ during ablation. Europace 2017;19:21–28. PubMed PMC
Peichl P, Baran J, Wichterle D, et al.The tip of the muscle is a dominant location of ventricular ectopy originating from papillary muscles in the left ventricle. J Cardiovasc Electrophysiol 2018;29:64–70. PubMed
Lee A, Hamilton-Craig C, Denman R, Haqqani HM. Catheter ablation of papillary muscle arrhythmias: implications of mitral valve prolapse and systolic dysfunction. Pacing Clin Electrophysiol 2018;41:750–758. PubMed
Ren JF, Marchlinski FE. Early detection of iatrogenic pericardial effusion: importance of intracardiac echocardiography. JACC Cardiovasc Interv 2010;3:127. PubMed
Filgueiras-Rama D, de Torres-Alba F, Castrejón-Castrejón S, et al.Utility of intracardiac echocardiography for catheter ablation of complex cardiac arrhythmias in a medium-volume training center. Echocardiography 2015; 32:660–670. PubMed
Weintraub AR, Schwartz SL, Smith J, Hsu TL, Pandian NG. Intracardiac two-dimensional echocardiography in patients with pericardial effusion and cardiac tamponade. J Am Soc Echocardiogr 1991;4:571–576. PubMed
Bala R, Ren JF, Hutchinson MD, et al.Assessing epicardial substrate using intracardiac echocardiography during VT ablation. Circ Arrhythm Electrophysiol 2011;4:667–673. PubMed PMC
Peichl P, Wichterle D, Cihak R, Aldhoon B, Kautzner J. Catheter ablation of ventricular tachycardia in the presence of an old endocavitary thrombus guided by intracardiac echocardiography. Pacing Clin Electrophysiol 2016;39:581–587. PubMed
Callans DJ, Ren JF, Michele J, Marchlinski FE, Dillon SM. Electroanatomic left ventricular mapping in the porcine model of healed anterior myocardial infarction: correlation with intracardiac echocardiography and pathological analysis. Circulation 1999;100: 1744–1750. PubMed
Nguyen DT, Zipse M, Borne RT, Zheng L, Tzou WS, Sauer WH. Use of tissue electric and ultrasound characteristics to predict and prevent steamgenerated cavitation during high-power radiofrequency ablation. JACC Clin Electrophysiol 2018;4:491–500. PubMed
Von Bergen NH, Bansal S, Gingerich J, Law IH. Nonfluoroscopic and radiation-limited ablation of ventricular arrhythmias in children and young adults: a case series. Pediatric Cardiology 2011;32:743–747. PubMed
Tuzcu V Significant reduction of fluoroscopy in pediatric catheter ablation procedures: long-term experience from a single center. Pacing Clin Electrophysiol 2012;35:1067–1073. PubMed
Cano O, Alonso P, Osca J, et al.Initial experience with a new image integration module designed for reducing radiation exposure during electrophysiological ablation procedures. J Cardiovasc Electrophysiol 2015; 26:662–670. PubMed
Reents T, Buiatti A, Ammar S, et al.Catheter ablation of ventricular arrhythmias using a fluoroscopy image integration module. Pacing Clin Electrophysiol 2015;38:700–705. PubMed
Cano O, Andres A, Osca J, et al.Safety and feasibility of a minimally fluoroscopic approach for ventricular tachycardia ablation in patients with structural heart disease: influence of the ventricular tachycardia substrate. Circ Arrhythm Electrophysiol 2016;9:e003706. PubMed
Cheitlin MD, Alpert JS, Armstrong WF, et al.ACC/AHA guidelines for the clinical application of echocardiography: executive summary. A report of the American College of Cardiology/American Heart Association Task Force on practice guidelines (Committee on Clinical Application of Echocardiography). J Am Coll Cardiol 1997;29:862–879. PubMed
Eitel C, Piorkowski C, Hindricks G, Gutberlet M. Electrophysiology study guided by real-time magnetic resonance imaging. Eur Heart J 2012; 33:1975. PubMed
Piorkowski C, Grothoff M, Gaspar T, et al.Cavotricuspid isthmus ablation guided by real-time magnetic resonance imaging. Circ Arrhythm Electrophysiol 2013;6:e7–e10. PubMed
Grant EK, Berul CI, Cross RR, et al.Acute cardiac MRI assessment of radiofrequency ablation lesions for pediatric ventricular arrhythmia: feasibility and clinical correlation. J Cardiovasc Electrophysiol 2017; 28:517–522. PubMed PMC
Nazarian S, Kantsevoy SV, Zviman MM, et al.Feasibility of endoscopic guidance for nonsurgical transthoracic atrial and ventricular epicardial ablation. Heart Rhythm 2008;5:1115–1119. PubMed PMC
Khaykin Y, Skanes A, Whaley B, et al.Real-time integration of 2D intracardiac echocardiography and 3D electroanatomical mapping to guide ventricular tachycardia ablation. Heart Rhythm 2008;5:1396–1402. PubMed
Sporton SC, Earley MJ, Nathan AW, Schilling RJ. Electroanatomic versus fluoroscopic mapping for catheter ablation procedures: a prospective randomized study. J Cardiovasc Electrophysiol 2004;15:310–315. PubMed
Earley MJ, Showkathali R, Alzetani M, et al.Radiofrequency ablation of arrhythmias guided by non-fluoroscopic catheter location: a prospective randomized trial. Eur Heart J 2006;27:1223–1229. PubMed
Marchlinski FE, Callans DJ, Gottlieb CD, Zado E. Linear ablation lesions for control of unmappable ventricular tachycardia in patients with ischemic and nonischemic cardiomyopathy. Circulation 2000;101:1288–1296. PubMed
Khongphatthanayothin A, Kosar E, Nademanee K. Nonfluoroscopic three-dimensional mapping for arrhythmia ablation: tool or toy? J Cardiovasc Electrophysiol 2000;11:239–243. PubMed
Stevenson WG, Wilber DJ, Natale A, et al.Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Reithmann C, Hahnefeld A, Remp T, et al.Electroanatomic mapping of endocardial right ventricular activation as a guide for catheter ablation in patients with arrhythmogenic right ventricular dysplasia. Pacing Clin Electrophysiol 2003;26:1308–1316. PubMed
Zeppenfeld K, Schalij MJ, Bartelings MM, et al.Catheter ablation of ventricular tachycardia after repair of congenital heart disease. Circulation 2007; 116:2241–2252. PubMed
Codreanu A, Odille F, Aliot E, et al.Electroanatomic characterization of post-infarct scars comparison with 3-dimensional myocardial scar reconstruction based on magnetic resonance imaging. J Am Coll Cardiol 2008; 52:839–842. PubMed
Zhang F, Yang B, Chen H, et al.Magnetic versus manual catheter navigation for mapping and ablation of right ventricular outflow tract ventricular arrhythmias: a randomized controlled study. Heart Rhythm 2013; 10:1178–1183. PubMed
Dinov B, Schoenbauer R, Wojdyla-Horodynska A, et al.Long-term efficacy of single procedure remote magnetic catheter navigation for ablation of ischemic ventricular tachycardia: a retrospective study. J Cardiovasc Electrophysiol 2012;23:499–505. PubMed
Szili-Torok T, Schwagten B, Akca F, et al.Catheter ablation of ventricular tachycardias Using remote magnetic navigation: a consecutive case-control study. J Cardiovasc Electrophysiol 2012;23:948–954. PubMed
Akca F, Theuns DA, Abkenari LD, de Groot NM, Jordaens L, Szili-Torok T. Outcomes of repeat catheter ablation using magnetic navigation or conventional ablation. Europace 2013;15:1426–1431. PubMed
Bauernfeind T, Akca F, Schwagten B, et al.The magnetic navigation system allows safety and high efficacy for ablation of arrhythmias. Europace 2011; 13:1015–1021. PubMed PMC
Gepstein L, Hayam G, Ben-Haim SA. A novel method for nonfluoroscopic catheter-based electroanatomical mapping of the heart. In vitro and in vivo accuracy results. Circulation 1997;95:1611–1622. PubMed
Krummen DE, Hayase J, Vampola SP, et al.Modifying ventricular fibrillation by targeted rotor substrate ablation: proof-of-concept from experimental studies to clinical VF. J Cardiovasc Electrophysiol 2015;26:1117–1126. PubMed PMC
Nademanee K, Kosar EM. A nonfluoroscopic catheter-based mapping technique to ablate focal ventricular tachycardia. Pacing Clin Electrophysiol 1998;21:1442–1447. PubMed
Stevenson WG, Delacretaz E, Friedman PL, Ellison KE. Identification and ablation of macroreentrant ventricular tachycardia with the CARTO electroanatomical mapping system. Pacing Clin Electrophysiol 1998; 21:1448–1456. PubMed
Tomassoni G, Stanton M, Richey M, Leonelli FM, Beheiry S, Natale A. Epicardial mapping and radiofrequency catheter ablation of ischemic ventricular tachycardia using a three-dimensional nonfluoroscopic mapping system. J Cardiovasc Electrophysiol 1999;10:1643–1648. PubMed
Soejima K, Suzuki M, Maisel W, et al.Catheter ablation in patients with multiple and unstable ventricular tachycardias after myocardial infarction: short ablation lines guided by reentry circuit isthmuses and sinus rhythm mapping. Circulation 2001;104:664–669. PubMed
Soejima K, Stevenson WG, Maisel WH, Sapp JL, Epstein LM. Electrically unexcitable scar mapping based on pacing threshold for identification of the reentry circuit isthmus: feasibility for guiding ventricular tachycardia ablation. Circulation 2002;106:1678–1683. PubMed
Reddy VY, Neuzil P, Taborsky M, Ruskin JN. Short-term results of substrate mapping and radiofrequency ablation of ischemic ventricular tachycardia using a saline-irrigated catheter. J Am Coll Cardiol 2003; 41:2228–2236. PubMed
Arenal A, Glez-Torrecilla E, Ortiz M, et al.Ablation of electrograms with an isolated, delayed component as treatment of unmappable monomorphic ventricular tachycardias in patients with structural heart disease. J Am Coll Cardiol 2003;41:81–92. PubMed
Soejima K, Stevenson WG, Sapp JL, Selwyn AP, Couper G, Epstein LM. Endocardial and epicardial radiofrequency ablation of ventricular tachycardia associated with dilated cardiomyopathy: the importance of low-voltage scars. J Am Coll Cardiol 2004;43:1834–1842. PubMed
Marchlinski F, Zado E, Dixit S, et al.Electroanatomic substrate and outcome of catheter ablative therapy for ventricular tachycardia in setting of right ventricular cardiomyopathy. Circulation 2004;110:2293–2298. PubMed
Ouyang F, Cappato R, Ernst S, et al.Electroanatomic substrate of idiopathic left ventricular tachycardia: unidirectional block and macroreentry within the Purkinje network. Circulation 2002;105:462–469. PubMed
Faddis MN, Blume W, Finney J, et al.Novel, magnetically guided catheter for endocardial mapping and radiofrequency catheter ablation. Circulation 2002;106:2980–2985. PubMed
Shauer A, De Vries L, Akca F, et al.Clinical research: remote magnetic navigation vs. manually controlled catheter ablation of right ventricular outflow tract arrhythmias: a retrospective study. Europace 2018;20(Suppl. 2):ii28–ii32. PubMed
Skoda J, Arya A, Garcia F, et al.Catheter ablation of ischemic ventricular tachycardia with remote magnetic navigation: STOP-VT multicenter trial. J Cardiovasc Electrophysiol 2016;27(Suppl. 1):S29–S37. PubMed
Kawamura M, Scheinman MM, Tseng ZH, Lee BK, Marcus GM, Badhwar N. Comparison of remote magnetic navigation ablation and manual ablation of idiopathic ventricular arrhythmia after failed manual ablation. J Interv Card Electrophysiol 2017;48:35–42. PubMed
Jin Q, Jacobsen PK, Pehrson S, Chen X. Acute and long term outcomes of catheter ablation using remote magnetic navigation for the treatment of electrical storm in patients with severe ischemic heart failure. Int J Cardiol 2015; 183:11–16. PubMed
Arya A, Eitel C, Bollmann A, et al.Catheter ablation of scar-related ventricular tachycardia in patients with electrical storm using remote magnetic catheter navigation. Pacing Clin Electrophysiol 2010;33:1312–1318. PubMed
Haghjoo M, Hindricks G, Bode K, Piorkowski C, Bollmann A, Arya A. Initial clinical experience with the new irrigated tip magnetic catheter for ablation of scar-related sustained ventricular tachycardia: a small case series. J Cardiovasc Electrophysiol 2009;20:935–939. PubMed
Di Biase L, Santangeli P, Astudillo V, et al.Endo-epicardial ablation of ventricular arrhythmias in the left ventricle with the remote magnetic navigation system and the 3.5-mm open irrigated magnetic catheter: results from a large single-center case-control series. Heart Rhythm 2010;7:1029–1035. PubMed
Aryana A, d’Avila A, Heist EK, et al.Remote magnetic navigation to guide endocardial and epicardial catheter mapping of scar-related ventricular tachycardia. Circulation 2007;115:1191–1200. PubMed
Qian P, De Silva K, Kumar S, et al.Early and long-term outcomes after manual and remote magnetic navigation-guided catheter ablation for ventricular tachycardia. Europace 2018;20(Suppl. 2):ii11–ii21. PubMed
Di Biase L, Tung R, Szili-Torok T, et al.; MAGNETIC VT Investigators. MAGNETIC VT study: a prospective, multicenter, post-market randomized controlled trial comparing VT ablation outcomes using remote magnetic navigation-guided substrate mapping and ablation versus manual approach in a low LVEF population. J Interv Card Electrophysiol 2017;48:237–245. PubMed
Tokuda M, Kojodjojo P, Tung S, et al.Characteristics of clinical and induced ventricular tachycardia throughout multiple ablation procedures. J Cardiovasc Electrophysiol 2016;27:88–94. PubMed
Kumar S, Barbhaiya CR, Sobieszczyk P, et al.Role of alternative interventional procedures when endo- and epicardial catheter ablation attempts for ventricular arrhythmias fail. Circ Arrhythm Electrophysiol 2015; 8:606–615. PubMed
Soejima K, Couper G, Cooper JM, Sapp JL, Epstein LM, Stevenson WG. Subxiphoid surgical approach for epicardial catheter-based mapping and ablation in patients with prior cardiac surgery or difficult pericardial access. Circulation 2004;110:1197–1201. PubMed
Tokuda M, Kojodjojo P, Tung S, et al.Acute failure of catheter ablation for ventricular tachycardia due to structural heart disease: causes and significance. J Am Heart Assoc 2013;2:e000072. PubMed PMC
Dinov B, Fiedler L, Schonbauer R, et al.Outcomes in catheter ablation of ventricular tachycardia in dilated nonischemic cardiomyopathy compared with ischemic cardiomyopathy: results from the Prospective Heart Centre of Leipzig VT (HELP-VT) Study. Circulation 2014;129:728–736. PubMed
Demolin JM, Eick OJ, Munch K, Koullick E, Nakagawa H, Wittkampf FH. Soft thrombus formation in radiofrequency catheter ablation. Pacing Clin Electrophysiol 2002;25:1219–1222. PubMed
Matsudaira K, Nakagawa H, Wittkampf FH, et al.High incidence of thrombus formation without impedance rise during radiofrequency ablation using electrode temperature control. Pacing Clin Electrophysiol 2003;26:1227–1237. PubMed
Nakagawa H, Yamanashi WS, Pitha JV, et al.Comparison of in vivo tissue temperature profile and lesion geometry for radiofrequency ablation with a saline-irrigated electrode versus temperature control in a canine thigh muscle preparation. Circulation 1995;91:2264–2273. PubMed
Weiss C, Antz M, Eick O, Eshagzaiy K, Meinertz T, Willems S. Radiofrequency catheter ablation using cooled electrodes: impact of irrigation flow rate and catheter contact pressure on lesion dimensions. Pacing Clin Electrophysiol 2002;25:463–469. PubMed
Yokoyama K, Nakagawa H, Wittkampf FH, Pitha JV, Lazzara R, Jackman WM. Comparison of electrode cooling between internal and open irrigation in radiofrequency ablation lesion depth and incidence of thrombus and steam pop. Circulation 2006;113:11–19. PubMed
Guerra JM, Jorge E, Raga S, et al.Effects of open-irrigated radiofrequency ablation catheter design on lesion formation and complications: in vitro comparison of 6 different devices. J Cardiovasc Electrophysiol 2013; 24:1157–1162. PubMed
Gonzalez-Suarez A, Berjano E, Guerra JM, Gerardo-Giorda L. Computational modeling of open-irrigated electrodes for radiofrequency cardiac ablation including blood motion-saline flow interaction. PLoS One 2016;11:e0150356. PubMed PMC
Skrumeda LL, Mehra R. Comparison of standard and irrigated radiofrequency ablation in the canine ventricle. J Cardiovasc Electrophysiol 1998;9:1196–1205. PubMed
Matsumoto N, Kishi R, Kasugai H, et al.Experimental study on the effectiveness and safety of radiofrequency catheter ablation with the cooled ablation system. Circ J 2003;67:154–158. PubMed
Cooper JM, Sapp JL, Tedrow U, et al.Ablation with an internally irrigated radiofrequency catheter: learning how to avoid steam pops. Heart Rhythm 2004;1:329–333. PubMed
Seiler J, Roberts-Thomson KC, Raymond JM, Vest J, Delacretaz E, Stevenson WG. Steampops during irrigated radiofrequency ablation:feasibility of impedance monitoring for prevention. Heart Rhythm 2008;5:1411–1416. PubMed
Ikeda A, Nakagawa H, Lambert H, et al.Relationship between catheter contact force and radiofrequency lesion size and incidence of steam pop in the beating canine heart: electrogram amplitude, impedance, and electrode temperature are poor predictors of electrode-tissue contact force and lesion size. Circ Arrhythm Electrophysiol 2014;7:1174–1180. PubMed
Sacher F, Wright M, Derval N, et al.Endocardial versus epicardial ventricular radiofrequency ablation: utility of in vivo contact force assessment. Circ Arrhythm Electrophysiol 2013;6:144–150. PubMed
Hendriks AA, Akca F, Dabiri Abkenari L, et al.Safety and clinical outcome of catheter ablation of ventricular arrhythmias using contact force sensing: consecutive case series. J Cardiovasc Electrophysiol 2015;26:1224–1229. PubMed
Elsokkari I, Sapp JL, Doucette S, et al.Role of contact force in ischemic scar-related ventricular tachycardia ablation; optimal force required and impact of left ventricular access route. J Interv Card Electrophysiol 2018;53:323–331. PubMed
Ariyarathna N, Kumar S, Thomas SP, Stevenson WG, Michaud GF. Role of contact force sensing in catheter ablation of cardiac arrhythmias: evolution or history repeating itself? JACC Clin Electrophysiol 2018;4:707–723. PubMed
Nakagawa H, Wittkampf FH, Yamanashi WS, et al.Inverse relationship between electrode size and lesion size during radiofrequency ablation with active electrode cooling. Circulation 1998;98:458–465. PubMed
Nguyen DT, Gerstenfeld EP, Tzou WS, et al.Radiofrequency ablation using an open irrigated electrode cooled with half-normal saline. JACC Clin Electrophysiol 2017;3:1103–1110. PubMed
Nguyen DT, Olson M, Zheng L, Barham W, Moss JD, Sauer WH. Effect of irrigant characteristics on lesion formation after radiofrequency energy delivery using ablation catheters with actively cooled tips. J Cardiovasc Electrophysiol 2015;26:792–798. PubMed
Nguyen DT, Tzou WS, Sandhu A, et al.Prospective multicenter experience with cooled radiofrequency ablation using high impedance irrigant to target deep myocardial substrate refractory to standard ablation. JACC Clin Electrophysiol 2018;4:1176–1185. PubMed
Yamada T, Maddox WR, McElderry HT, Doppalapudi H, Plumb VJ, Kay GN. Radiofrequency catheter ablation of idiopathic ventricular arrhythmias originating from intramural foci in the left ventricular outflow tract: efficacy of sequential versus simultaneous unipolar catheter ablation. Circ Arrhythm Electrophysiol 2015;8:344–352. PubMed
Sivagangabalan G, Barry MA, Huang K, et al.Bipolar ablation of the interventricular septum is more efficient at creating a transmural line than sequential unipolar ablation. Pacing Clin Electrophysiol 2010;33:16–26. PubMed
Ring ME, Huang SK, Graham AR, Gorman G, Bharati S, Lev M. Catheter ablation of the ventricular septum with radiofrequency energy. Am Heart J 1989;117:1233–1240. PubMed
Piers SR, Dyrda K, Tao Q, Zeppenfeld K. Bipolar ablation of ventricular tachycardia in a patient after atrial switch operation for dextro-transposition of the great arteries. Circ Arrhythm Electrophysiol 2012;5:e38–e40. PubMed
Koruth JS, Dukkipati S, Miller MA, Neuzil P, d’Avila A, Reddy VY. Bipolar irrigated radiofrequency ablation: a therapeutic option for refractory intramural atrial and ventricular tachycardia circuits. Heart Rhythm 2012; 9:1932–1941. PubMed
Nguyen DT, Tzou WS, Brunnquell M, et al.Clinical and biophysical evaluation of variable bipolar configurations during radiofrequency ablation for treatment of ventricular arrhythmias. Heart Rhythm 2016;13:2161–2171. PubMed
Sapp JL, Cooper JM, Soejima K, et al.Deep myocardial ablation lesions can be created with a retractable needle-tipped catheter. Pacing Clin Electrophysiol 2004;27:594–599. PubMed
Sapp JL, Cooper JM, Zei P, Stevenson WG. Large radiofrequency ablation lesions can be created with a retractable infusion-needle catheter. J Cardiovasc Electrophysiol 2006;17:657–661. PubMed
Berte B, Cochet H, Magat J, et al.Irrigated needle ablation creates larger and more transmural ventricular lesions compared with standard unipolar ablation in an ovine model. Circ Arrhythm Electrophysiol 2015; 8:1498–1506. PubMed
Sapp JL, Beeckler C, Pike R, et al.Initial human feasibility of infusion needle catheter ablation for refractory ventricular tachycardia. Circulation 2013;128:2289–2295. PubMed
John RM, Connell J, Termin P, et al.Characterization of warm salineenhanced radiofrequency ablation lesions in the infarcted porcine ventricular myocardium. J Cardiovasc Electrophysiol 2014;25:309–316. PubMed
Khairy P, Rivard L, Guerra PG, et al.Morphometric ablation lesion characteristics comparing 4, 6, and 8 mm electrode-tip cryocatheters. J Cardiovasc Electrophysiol 2008;19:1203–1207. PubMed
Deisenhofer I, Zrenner B, Yin YH, et al.Cryoablation versus radiofrequency energy for the ablation of atrioventricular nodal reentrant tachycardia (the CYRANO Study): results from a large multicenter prospective randomized trial. Circulation 2010;122:2239–2245. PubMed
Opel A, Murray S, Kamath N, et al.Cryoablation versus radiofrequency ablation for treatment of atrioventricular nodal reentrant tachycardia: cryoablation with 6-mm-tip catheters is still less effective than radiofrequency ablation. Heart Rhythm 2010;7:340–343. PubMed
Gordon JP, Liang JJ, Pathak RK, et al.Percutaneous cryoablation for papillary muscle ventricular arrhythmias after failed radiofrequency catheter ablation. J Cardiovasc Electrophysiol 2018;29:1654–1663. PubMed
Guiraudon GM, Thakur RK, Klein GJ, Yee R, Guiraudon CM, Sharma A. Encircling endocardial cryoablation for ventricular tachycardia after myocardial infarction: experience with 33 patients. Am Heart J 1994; 128:982–989. PubMed
Frapier JM, Hubaut JJ, Pasquie JL, Chaptal PA. Large encircling cryoablation without mapping for ventricular tachycardia after anterior myocardial infarction: long-term outcome. J Thorac Cardiovasc Surg 1998; 116:578–583. PubMed
Baust JM, Robilotto A, Guerra P, et al.Assessment of a novel cryoablation device for the endovascular treatment of cardiac tachyarrhythmias. SAGE Open Med 2018;6. 2050312118769797. PubMed PMC
Brugada P, de Swart H, Smeets JL, Bar FW, Wellens HJ. Termination of tachycardias by interrupting blood flow to the arrhythmogenic area. Am J Cardiol 1988;62:387–392. PubMed
Kay GN, Epstein AE, Bubien RS, Anderson PG, Dailey SM, Plumb VJ. Intracoronary ethanol ablation for the treatment of recurrent sustained ventricular tachycardia. J Am Coll Cardiol 1992;19:159–168. PubMed
Segal OR, Wong T, Chow AW, et al.Intra-coronary guidewire mapping-a novel technique to guide ablation of human ventricular tachycardia. J Interv Card Electrophysiol 2007;18:143–154. PubMed
Sacher F, Sobieszczyk P, Tedrow U, et al.Transcoronary ethanol ventricular tachycardia ablation in the modern electrophysiology era. Heart Rhythm 2008;5:62–68. PubMed
Tokuda M, Sobieszczyk P, Eisenhauer AC, et al.Transcoronary ethanol ablation for recurrent ventricular tachycardia after failed catheter ablation: an update. Circ Arrhythm Electrophysiol 2011;4:889–896. PubMed
Kreidieh B, Rodriguez-Manero M, Schurmann P, Ibarra-Cortez SH, Dave AS, Valderrabano M. Retrograde coronary venous ethanol infusion for ablation of refractory ventricular tachycardia. Circ Arrhythm Electrophysiol 2016;9:e004352. PubMed PMC
Baher A, Shah DJ, Valderrabano M. Coronary venous ethanol infusion for the treatment of refractory ventricular tachycardia. Heart Rhythm 2012; 9:1637–1639. PubMed PMC
Kato K, Tanaka A, Hasegawa S, Kametani R. Successful ethanol injection into the anterior interventricular cardiac vein for ventricular premature contractions arising from the left ventricular summit. HeartRhythm Case Rep 2018;4:310–313. PubMed PMC
Sharma A, Wong D, Weidlich G, et al.Noninvasive stereotactic radiosurgery (CyberHeart) for creation of ablation lesions in the atrium. Heart Rhythm 2010;7:802–810. PubMed
Cuculich PS, Schill MR, Kashani R, et al.Noninvasive cardiac radiation for ablation of ventricular tachycardia. N Engl J Med 2017;377:2325–2336. PubMed PMC
Loo BW Jr, Soltys SG, Wang L, et al.Stereotactic ablative radiotherapy for the treatment of refractory cardiac ventricular arrhythmia. Circ Arrhythm Electrophysiol 2015;8:748–750. PubMed
Lehmann HI, Graeff C, Simoniello P, et al.Feasibility study on cardiac arrhythmia ablation using high-energy heavy ion beams. Sci Rep 2016; 6:38895. PubMed PMC
Lehmann HI, Deisher AJ, Takami M, et al.External arrhythmia ablation using photon beams: ablation of the atrioventricular junction in an intact animal model. Circ Arrhythm Electrophysiol 2017;10:e004304. PubMed
Maury P, Rollin A, Mondoly P, Duparc A. Management of outflow tract ventricular arrhythmias. Curr Opin Cardiol 2015;30:50–57. PubMed
Bala R, Marchlinski FE. Electrocardiographic recognition and ablation of outflow tract ventricular tachycardia. Heart Rhythm 2007;4:366–370. PubMed
Wang C, Zhang Y, Hong F, Huang Y. Pulmonary artery: a pivotal site for catheter ablation in idiopathic RVOT ventricular arrhythmias. Pacing Clin Electrophysiol 2017;40:803–807. PubMed
Hutchinson MD, Garcia FC. An organized approach to the localization, mapping, and ablation of outflow tract ventricular arrhythmias. J Cardiovasc Electrophysiol 2013;24:1189–1197. PubMed
Asirvatham SJ. Correlative anatomy for the invasive electrophysiologist: outflow tract and supravalvar arrhythmia. J Cardiovasc Electrophysiol 2009;20:955–968. PubMed
Hai JJ, Lachman N, Syed FF, Desimone CV, Asirvatham SJ. The anatomic basis for ventricular arrhythmia in the normal heart: what the student of anatomy needs to know. Clin Anat 2014;27:885–893. PubMed PMC
Yamada T, McElderry HT, Doppalapudi H, et al.Idiopathic ventricular arrhythmias originating from the left ventricular summit: anatomic concepts relevant to ablation. Circ Arrhythm Electrophysiol 2010;3:616–623. PubMed
Ouyang F, Fotuhi P, Ho SY, et al.Repetitive monomorphic ventricular tachycardia originating from the aortic sinus cusp: electrocardiographic characterization for guiding catheter ablation. J Am Coll Cardiol 2002;39:500–508. PubMed
Wasmer K, Köbe J, Dechering DG, et al.Ventricular arrhythmias from the mitral annulus: patient characteristics, electrophysiological findings, ablation, and prognosis. Heart Rhythm 2013;10:783–788. PubMed
Yamauchi Y, Aonuma K, Takahashi A, et al.Electrocardiographic characteristics of repetitive monomorphic right ventricular tachycardia originating near the His-bundle. J Cardiovasc Electrophysiol 2005;16:1041–1048. PubMed
Tada H, Tadokoro K, Ito S, et al.Idiopathic ventricular arrhythmias originating from the tricuspid annulus: prevalence, electrocardiographic characteristics, and results of radiofrequency catheter ablation. Heart Rhythm 2007;4:7–16. PubMed
Lerman BB. Mechanism, diagnosis, and treatment of outflow tract tachycardia. Nat Rev Cardiol 2015;12:597–608. PubMed
Dixit S, Marchlinski FE. Clinical characteristics and catheter ablation of left ventricular outflow tract tachycardia. Curr Cardiol Rep 2001;3:305–313. PubMed
Joshi S, Wilber DJ. Ablation of idiopathic right ventricular outflow tract tachycardia: current perspectives. J Cardiovasc Electrophysiol 2005; 16(Suppl. 1):S52–S58. PubMed
Bogun F, Taj M, Ting M, et al.Spatial resolution of pace mapping of idiopathic ventricular tachycardia/ectopy originating in the right ventricular outflow tract. Heart Rhythm 2008;5:339–344. PubMed
Yamada T, Murakami Y, Yoshida N, et al.Preferential conduction across the ventricular outflow septum in ventricular arrhythmias originating from the aortic sinus cusp. J Am Coll Cardiol 2007;50:884–891. PubMed
Tanner H, Hindricks G, Schirdewahn P, et al.Outflow tract tachycardia with R/S transition in lead V3: six different anatomic approaches for successful ablation. J Am Coll Cardiol 2005;45:418–423. PubMed
Zhang F, Chen M, Yang B, et al.Electrocardiographic algorithm to identify the optimal target ablation site for idiopathic right ventricular outflow tract ventricular premature contraction. Europace 2009;11:1214–1220. PubMed
Betensky BP, Park RE, Marchlinski FE, et al.The V(2) transition ratio: a new electrocardiographic criterion for distinguishing left from right ventricularoutflowtract tachycardiaorigin.J AmColl Cardiol 2011;57:2255–2262. PubMed
Yoshida N, Yamada T, McElderry HT, et al.A novel electrocardiographic criterion for differentiatinga left fromrightventricularoutflowtracttachycardia origin: the V2S/V3R index. J Cardiovasc Electrophysiol 2014;25:747–753. PubMed
Hai JJ, Desimone CV, Vaidya VR, Asirvatham SJ. Endocavitary structures in the outflow tract: anatomy and electrophysiology of the conus papillary muscles. J Cardiovasc Electrophysiol 2014;25:94–98. PubMed PMC
Latchamsetty R, Yokokawa M, Morady F, et al.Multicenter outcomes for catheter ablation of idiopathic premature ventricular complexes. JACC Clin Electrophysiol 2015;1:116–123. PubMed
Ling Z, Liu Z, Su L, et al.Radiofrequency ablation versus antiarrhythmic medication for treatment of ventricular premature beats from the right ventricular outflow tract: prospective randomized study. Circ Arrhythm Electrophysiol 2014;7:237–243. PubMed
Gard JJ, Asirvatham S. Outflow tract ventricular tachycardia. Tex Heart Inst J 2012;39:526–528. PubMed PMC
Tada H Catheter ablation of tachyarrhythmias from the aortic sinuses of Valsalva—when and how? Circ J 2012;76:791–800. PubMed
Scanavacca M, Lara S, Hardy C, Pisani CF. How to identify & treat epicardial origin of outflow tract tachycardias. J Atr Fibrillation 2015;7:1195. PubMed PMC
Yoshida N, Inden Y, Uchikawa T, et al.Novel transitional zone index allows more accurate differentiation between idiopathic right ventricular outflow tract and aortic sinus cusp ventricular arrhythmias. Heart Rhythm 2011;8:349–356. PubMed
Kaseno K, Tada H, Tanaka S, et al.Successful catheter ablation of left ventricular epicardial tachycardia originating from the great cardiac vein: a case report and review of the literature. Circ J 2007;71:1983–1988. PubMed
Yamada T, Yoshida N, Murakami Y, et al.Electrocardiographic characteristics of ventricular arrhythmias originating from the junction of the left and right coronary sinuses of Valsalva in the aorta: the activation pattern as a rationale for the electrocardiographic characteristics. Heart Rhythm 2008;5:184–192. PubMed
Bala R, Garcia FC, Hutchinson MD, et al.Electrocardiographic and electrophysiologic features of ventricular arrhythmias originating from the right/left coronary cusp commissure. Heart Rhythm 2010;7:312–322. PubMed
Ebrille E, Chandra VM, Syed F, et al.Distinguishing ventricular arrhythmia originating from the right coronary cusp, peripulmonic valve area, and the right ventricular outflow tract: utility of lead I. J Cardiovasc Electrophysiol 2014;25:404–410. PubMed
Wang YB, Ma J, Dong JZ, et al.Catheter ablation of premature ventricular contractions originating in the aortic sinus cusp or great cardiac vein: two QRS morphologies with one origin. Pacing Clin Electrophysiol 2015; 38:1029–1038. PubMed
Yamada T, Yoshida N, Doppalapudi H, Litovsky SH, McElderry HT, Kay GN. Efficacy of an anatomical approach in radiofrequency catheter ablation of idiopathic ventricular arrhythmias originating from the left ventricular outflow tract. Circ Arrhythm Electrophysiol 2017;10:e004959. PubMed
Yamada T, Lau YR, Litovsky SH, et al.Prevalence and clinical, electrocardiographic, and electrophysiologic characteristics of ventricular arrhythmias originating from the noncoronary sinus of Valsalva. Heart Rhythm 2013;10:1605–1612. PubMed
Yamada T, McElderry HT, Doppalapudi H, et al.Idiopathic ventricular arrhythmias originating from the aortic root: prevalence, electrocardiographic and electrophysiologic characteristics, and results of radiofrequency catheter ablation. J Am Coll Cardiol 2008;52:139–147. PubMed
Vaidya V, Syed F, Desimone C, et al.Outflow tract ventricular tachycardia mapped to the coronary arteries: anatomical correlates and management strategies. J Cardiovasc Electrophysiol 2013;24:1416–1422. PubMed
Andrade FM, Ribeiro DC, Babinski MA, Cisne R, Góes ML. Triangle of Brocq and Mouchet: anatomical study in Brazilian cadavers and clinical implications. J Morphol Sci 2010;27:127–129.
Santangeli P, Marchlinski FE, Zado ES, et al.Percutaneous epicardial ablation of ventricular arrhythmias arising from the left ventricular summit: outcomes and electrocardiogram correlates of success. Circ Arrhythm Electrophysiol 2015;8:337–343. PubMed
Komatsu Y, Nogami A, Shinoda Y, et al.Idiopathic ventricular arrhythmias originating from the vicinity of the communicating vein of cardiac venous systems at the left ventricular summit. Circ Arrhythm Electrophysiol 2018;11:e005386. PubMed
Muser D, Santangeli P. Ventricular arrhythmias linked to the left ventricular summit communicating veins: a new mapping approach for an old ablation problem. Circ Arrhythm Electrophysiol 2018;11:e006105. PubMed
Yamada T, Doppalapudi H, Litovsky SH, McElderry HT, Kay GN. Challenging radiofrequency catheter ablation of idiopathic ventricular arrhythmias originating from the left ventricular summit near the left main coronary artery. Circ Arrhythm Electrophysiol 2016;9:e004202. PubMed
Nagashima K, Choi EK, Lin KY, et al.Ventricular arrhythmias near the distal great cardiac vein: challenging arrhythmia for ablation. Circ Arrhythm Electrophysiol 2014;7:906–912. PubMed
Baman TS, Ilg KJ, Gupta SK, et al.Mapping and ablation of epicardial idiopathic ventricular arrhythmias from within the coronary venous system. Circ Arrhythm Electrophysiol 2010;3:274–279. PubMed
Chen Y-H, Lin J-F. Catheter ablation of idiopathic epicardial ventricular arrhythmias originating from the vicinity of the coronary sinus system. J Cardiovasc Electrophysiol 2015;26:1160–1167. PubMed
Choi EK, Nagashima K, Lin KY, et al.Surgical cryoablation for ventricular tachyarrhythmia arising from the left ventricular outflow tract region. Heart Rhythm 2015;12:1128–1136. PubMed
Mulpuru SK, Feld GK, Madani M, Sawhney NS. A novel minimally-invasive surgical approach for ablation of ventricular tachycardia originating near the proximal left anterior descending artery. Circ Arrhythm Electrophysiol 2012;5:e95–e97. PubMed
Aziz Z, Moss JD, Jabbarzadeh M, Hellstrom J, Balkhy H, Tung R. Totally endoscopic robotic epicardial ablation of refractory left ventricular summit arrhythmia: first-in-man. Heart Rhythm 2017;14:135–138. PubMed
Yamada T, McElderry HT, Doppalapudi H, Kay GN. Catheter ablation of ventricular arrhythmias originating in the vicinity of the His bundle: significance of mapping the aortic sinus cusp. Heart Rhythm 2008;5:37–42. PubMed
Di Biase L, Al-Ahamad A, Santangeli P, et al.Safety and outcomes of cryoablation for ventricular tachyarrhythmias: results from a multicenter experience. Heart Rhythm 2011;8:968–974. PubMed
Yokokawa M, Good E, Chugh A, et al.Intramural idiopathic ventricular arrhythmias originating in the intraventricular septum: mapping and ablation. Circ Arrhythm Electrophysiol 2012;5:258–263. PubMed
Yokokawa M, Morady F, Bogun F. Injection of cold saline for diagnosis of intramural ventricular arrhythmias. Heart Rhythm 2016;13:78–82. PubMed
Kawamura Y, Kikuchi K, Nadeau R, Page P, Cardinal R. Identification of deep septal ventricular tachycardia substrates from epicardial breakthrough characteristics. J Cardiol 1995;26:349–355. PubMed
Yokokawa M, Jung DY, Hero AO III, Baser K, Morady F, Bogun F. Single- and dual-site pace mapping of idiopathic septal intramural ventricular arrhythmias. Heart Rhythm 2016;13:72–77. PubMed
Yamada T, Maddox WR, McElderry HT, Doppalapudi H, Plumb VJ, Kay GN. Radiofrequency catheter ablation of idiopathic ventricular arrhythmias originating from intramural foci in the left ventricular outflow tract: efficacy of sequential versus simultaneous unipolar catheter ablation. Circ Arrhythm Electrophysiol 2015;8:344–352. PubMed
Teh AW, Reddy VY, Koruth JS, et al.Bipolar radiofrequency catheter ablation for refractory ventricular outflow tract arrhythmias. J Cardiovasc Electrophysiol 2014;25:1093–1099. PubMed
Sapp JL, Beeckler C, Pike R, et al.Initial human feasibility of infusion needle catheter ablation for refractory ventricular tachycardia. Circulation 2013;128:2289–2295. PubMed
Wasmer K, Köbe J, Dechering DG, et al.Ventricular arrhythmias from the mitral annulus: patient characteristics, electrophysiological findings, ablation, and prognosis. Heart Rhythm 2013;10:783–788. PubMed
Kumagai K, Yamauchi Y, Takahashi A, et al.Idiopathic left ventricular tachycardia originating from the mitral annulus. J Cardiovasc Electrophysiol 2005;16:1029–1036. PubMed
Tada H, Ito S, Naito S, et al.Idiopathic ventricular arrhythmia arising from the mitral annulus: a distinct subgroup of idiopathic ventricular arrhythmias. J Am Coll Cardiol 2005;45:877–886. PubMed
Al’Aref SJ, Ip JE, Markowitz SM, et al.Differentiation of papillary muscle from fascicular and mitral annular ventricular arrhythmias in patients with and without structural heart disease. Circ Arrhythm Electrophysiol 2015; 8:616–624. PubMed
Yue-Chun L, Wen-Wu Z, Na-Dan Z, et al.Idiopathic premature ventricular contractions and ventricular tachycardias originating from the vicinity of tricuspid annulus: results of radiofrequency catheter ablation in thirty-five patients. BMC Cardiovasc Disord 2012;12:32. PubMed PMC
Tada H, Tadokoro K, Ito S, et al.Idiopathic ventricular arrhythmias originating from the tricuspid annulus: prevalence, electrocardiographic characteristics, and results of radiofrequency catheter ablation. Heart Rhythm 2007;4:7–16. PubMed
Yamada T, Kay GN. Anatomical consideration in catheter ablation of idiopathic ventricular arrhythmias. Arrhythm Electrophysiol Rev 2016; 5:203–209. PubMed PMC
Latchamsetty RY, Yokokawa M, Morady F, et al.Multicenter outcomes for catheter ablation of idiopathic premature ventricular complexes. JACC Clin Electrophysiol 2015;1:116–123. PubMed
Abouezzeddine O, Suleiman M, Buescher T, et al.Relevance of endocavitary structures in ablation procedures for ventricular tachycardia. J Cardiovasc Electrophysiol 2010;21:245–254. PubMed
Doppalapudi H, Yamada T, McElderry HT, Plumb VJ, Epstein AE, Kay GN. Ventricular tachycardia originating from the posterior papillary muscle in the left ventricle: a distinct clinical syndrome. Circ Arrhythm Electrophysiol 2008;1:23–29. PubMed
Enriquez A, Supple GE, Marchlinski FE, Garcia FC. How to map and ablate papillary muscle ventricular arrhythmias. Heart Rhythm 2017; 14:1721–1728. PubMed
Bogun F, Desjardins B, Crawford T, et al.Post-infarction ventricular arrhythmias originating in papillary muscles. J Am Coll Cardiol 2008; 51:1794–1802. PubMed
Sternick EB, Correa F, Negri R, Scarpelli RB, Gerken LM. Reversible cardiomyopathy provoked by focal ventricular arrhythmia originating from the base of the posterior papillary muscle. J Interv Card Electrophysiol 2009;25:67–72. PubMed
Lee A, Hamilton-Craig C, Denman R, Haqqani HM. Catheter ablation of papillary muscle arrhythmias: implications of mitral valve prolapse and systolic dysfunction. Pacing Clin Electrophysiol 2018;41:750–758. PubMed
Santoro F, Di Biase L, Hranitzky P, et al.Ventricular fibrillation triggered by PVCs from papillary muscles: clinical features and ablation. J Cardiovasc Electrophysiol 2014;25:1158–1164. PubMed
Yuan Hong-Tao, Yang M, Zhong L, et al.Ventricular premature contraction associated with mitral valve prolapse. Int J Cardiol 2016; 221:1144–1149. PubMed
Sriram CS, Syed FF, Ferguson ME, et al.Malignant bileaflet mitral valve prolapse syndrome in patients with otherwise idiopathic out-of-hospital cardiac arrest. J Am Coll Cardiol 2013;62:222–230. PubMed
Basso C, Perazzolo Marra M, Rizzo S, et al.Arrhythmic mitral valve prolapse and sudden cardiac death. Circulation 2015;132:556–566. PubMed
Naksuk N, Kapa S, Asirvatham SJ. Spectrum of ventricular arrhythmias arising from papillary muscle in the structurally normal heart. Card Electrophysiol Clin 2016;8:555–565. PubMed
Peichl P, Baran J, Wichterle D, et al.The tip of the muscle is a dominant location of ventricular ectopy originating from papillary muscles in the left ventricle. J Cardiovasc Electrophysiol 2018;29:64–70. PubMed
Al’Aref SJ, Ip JE, Markowitz SM, et al.Differentiation of papillary muscle from fascicular and mitral annular ventricular arrhythmias in patients with and without structural heart disease. Circ Arrhythm Electrophysiol 2015; 8:616–624. PubMed
Yamada T, Doppalapudi H, McElderry HT, et al.Electrocardiographic and electrophysiological characteristics in idiopathic ventricular arrhythmias originating from the papillary muscles in the left ventricle: relevance for catheter ablation. Circ Arrhythm Electrophysiol 2010;3:324–331. PubMed
Itoh T, Yamada T. Usefulness of pace mapping in catheter ablation of left ventricular papillary muscle ventricular arrhythmias with a preferential conduction. J Cardiovasc Electrophysiol 2018;29:889–899. PubMed
Yokokawa M, Good E, Desjardins B, et al.Predictors of successful catheter ablation of ventricular arrhythmias arising from the papillary muscles. Heart Rhythm 2010;7:1654–1659. PubMed PMC
Rivera S, Ricapito Mde L, Tomas L, et al.Results of cryoenergy and radiofrequency-based catheter ablation for treating ventricular arrhythmias arising from the papillary muscles of the left ventricle, guided by intracardiac echocardiography and image integration. Circ Arrhythm Electrophysiol 2016;9:e003874. PubMed
Mochizuki A, Nagahara D, Takahashi H, Saito R, Fujito T, Miura T. Worsening of mitral valve regurgitation after radiofrequency catheter ablation of ventricular arrhythmia originating from a left ventricular papillary muscle. HeartRhythm Case Rep 2017;3:215–218. PubMed PMC
Desimone CV, Hu T, Ebrille E, et al.Catheter ablation related mitral valve injury: the importance of early recognition and rescue mitral valve repair. J Cardiovasc Electrophysiol 2014;25:971–975. PubMed PMC
Guerot C, Valere PE, Castillo-Fenoy A, Tricot R. [Tachycardia by branch-to-branch reentry]. Arch Mal Coeur Vaiss 1974;67:1–11. PubMed
Akhtar M, Damato AN, Batsford WP, Ruskin JN, Ogunkelu JB, Vargas G. Demonstration of re-entry within the His-Purkinje system in man. Circulation 1974;50:1150–1162. PubMed
Blanck Z, Dhala A, Deshpande S, Sra J, Jazayeri M, Akhtar M. Bundle branch reentrant ventricular tachycardia: cumulative experience in 48 patients. J Cardiovasc Electrophysiol 1993;4:253–262. PubMed
Lloyd EA, Zipes DP, Heger JJ, Prystowsky EN. Sustained ventricular tachycardia due to bundle branch reentry. Am Heart J 1982; 104:1095–1097. PubMed
Touboul P, Kirkorian G, Atallah G, Moleur P. Bundle branch reentry: a possible mechanism of ventricular tachycardia. Circulation 1983; 67:674–680. PubMed
Narasimhan C, Jazayeri MR, Sra J, et al.Ventricular tachycardia in valvular heart disease: facilitation of sustained bundle-branch reentry by valve surgery. Circulation 1997;96:4307–4313. PubMed
Eckart RE, Hruczkowski TW, Tedrow UB, et al.Sustained ventricular tachycardia associated with corrective valve surgery. Circulation 2007; 116:2005–2011. PubMed
Merino JL, Carmona JR, Fernandez-Lozano I, Peinado R, Basterra N, Sobrino JA. Mechanisms of sustained ventricular tachycardia in myotonic dystrophy: implications for catheter ablation. Circulation 1998; 98:541–546. PubMed
Negri SM, Cowan MD. Becker muscular dystrophy with bundle branch reentry ventricular tachycardia. J Cardiovasc Electrophysiol 1998; 9:652–654. PubMed
Takeda K, Takemoto M, Mukai Y, et al.Bundle branch re-entry ventricular tachycardia in a patient with myotonic dystrophy. J Cardiol 2009; 53:463–466. PubMed
Andress JD, Vander Salm TJ, Huang SK. Bidirectional bundle branch reentry tachycardia associated with Ebstein’s anomaly: cured by extensive cryoablation of the right bundle branch. Pacing Clin Electrophysiol 1991;14:1639–1647. PubMed
Barra S, Moreno N, Providência R, Gonçalves H, Primo JJ. Incessant slow bundle branch reentrant ventricular tachycardia in a young patient with left ventricular noncompaction. Rev Port Cardiol 2013;32:523–529. PubMed
Dora SK, Valaparambil A, Namboodiri N, Bohora SR, Tharakan J. Bundle branch reentry ventricular tachycardia in arrhythmogenic right ventricular dysplasia. J Interv Card Electrophysiol 2008;21:215–218. PubMed
Rodriguez-Manero M, Sacher F, de Asmundis C, et al.Monomorphic ventricular tachycardia in patients with Brugada syndrome: a multicenter retrospective study. Heart Rhythm 2016;13:669–682. PubMed
Blanck Z, Jazayeri M, Dhala A, Deshpande S, Sra J, Akhtar M. Bundle branch reentry: a mechanism of ventricular tachycardia in the absence of myocardial or valvular dysfunction. J Am Coll Cardiol 1993; 22:1718–1722. PubMed
Blanck Z, Deshpande S, Jazayeri MR, Akhtar M. Catheter ablation of the left bundle branch for the treatment of sustained bundle branch reentrant ventricular tachycardia. J Cardiovasc Electrophysiol 1995;6:40–43. PubMed
Phlips T, Ramchurn H, De Roy L. Reverse BBRVT in a structurally normal heart. Acta Cardiol 2012;67:603–607. PubMed
Simons GR, Sorrentino RA, Zimerman LI, Wharton JM, Natale A. Bundle branch reentry tachycardia and possible sustained interfascicular reentry tachycardia with a shared unusual induction pattern. J Cardiovasc Electrophysiol 1996;7:44–50. PubMed
Roberts JD, Gollob MH, Young C, et al.Bundle branch re-entrant ventricular tachycardia: novel genetic mechanisms in a life-threatening arrhythmia. JACC Clin Electrophysiol 2017;3:276–288. PubMed
Caceres J, Jazayeri M, McKinnie J, et al.Sustained bundle branch reentry as a mechanism of clinical tachycardia. Circulation 1989; 79:256–270. PubMed
Delacretaz E, Stevenson WG, Ellison KE, Maisel WH, Friedman PL. Mapping and radiofrequency catheter ablation of the three types of sustained monomorphic ventricular tachycardia in nonischemic heart disease. J Cardiovasc Electrophysiol 2000;11:11–17. PubMed
Cantillon DJ, Bianco C, Wazni OM, et al.Electrophysiologic characteristics and catheter ablation of ventricular tachyarrhythmias among patients with heart failure on ventricular assist device support. Heart Rhythm 2012;9:859–864. PubMed
Wang CW, Sterba R, Tchou P. Bundle branch reentry ventricular tachycardia with two distinct left bundle branch block morphologies. J Cardiovasc Electrophysiol 1997;8:688–693. PubMed
Wang PJ, Friedman PL. “Clockwise” and “counterclockwise” bundle branch reentry as a mechanism for sustained ventricular tachycardia masquerading as supraventricular tachycardia. Pacing Clin Electrophysiol 1989;12:1426–1432. PubMed
Tchou P, Mehdirad AA. Bundle branch reentry ventricular tachycardia. Pacing Clin Electrophysiol 1995;18:1427–1437. PubMed
Blanck Z, Akhtar M. Ventricular tachycardia due to sustained bundle branch reentry: diagnostic and therapeutic considerations. Clin Cardiol 1993;16:619–622. PubMed
Mehdirad AA, Keim S, Rist K, Mazgalev T, Tchou P. Asymmetry of retrograde conduction and reentry within the His-Purkinje system: a comparative analysis of left and right ventricular stimulation. J Am Coll Cardiol 1994;24:177–184. PubMed
Li YG, Gronefeld G, Israel C, Bogun F, Hohnloser SH. Bundle branch reentrant tachycardia in patients with apparent normal His-Purkinje conduction: the role of functional conduction impairment. J Cardiovasc Electrophysiol 2002;13:1233–1239. PubMed
Reddy CP, Harris B. Gap phenomenon in “the right and left bundle branch systems” during retrograde conduction in man. Am Heart J 1979;97:216–224. PubMed
Akhtar M, Denker S, Lehmann MH, Mahmud R. Macro-reentry within the His Purkinje system. Pacing Clin Electrophysiol 1983;6:1010–1028. PubMed
Fisher JD. Bundle branch reentry tachycardia: why is the HV interval often longer than in sinus rhythm? The critical role of anisotropic conduction. J Interv Card Electrophysiol 2001;5:173–176. PubMed
Merino JL, Peinado R, Fernandez-Lozano I, Sobrino N, Sobrino JA. Transient entrainment of bundle-branch reentry by atrial and ventricular stimulation: elucidation of the tachycardia mechanism through analysis of the surface ECG. Circulation 1999;100:1784–1790. PubMed
Merino JL, Peinado R, Fernandez-Lozano I, et al.Bundle-branch reentry and the postpacing interval after entrainment by right ventricular apex stimulation: a new approach to elucidate the mechanism of wide-QRS-complex tachycardia with atrioventricular dissociation. Circulation 2001;103:1102–1108. PubMed
Reithmann C, Hahnefeld A, Oversohl N, Ulbrich M, Remp T, Steinbeck G. Reinitiation of ventricular macroreentry within the His-Purkinje system by back-up ventricular pacing: a mechanism of ventricular tachycardia storm. Pacing Clin Electrophysiol 2007;30:225–235. PubMed
Berger RD, Orias D, Kasper EK, Calkins H. Catheter ablation of coexistent bundle branch and interfascicular reentrant ventricular tachycardias. J Cardiovasc Electrophysiol 1996;7:341–347. PubMed
Crijns HJ, Smeets JL, Rodriguez LM, Meijer A, Wellens HJ. Cure of interfascicular reentrant ventricular tachycardia by ablation of the anterior fascicle of the left bundle branch. J Cardiovasc Electrophysiol 1995; 6:486–492. PubMed
Lopera G, Stevenson WG, Soejima K, et al.Identification and ablation of three types of ventricular tachycardia involving the His-Purkinje system in patients with heart disease. J Cardiovasc Electrophysiol 2004; 15:52–58. PubMed
Cohen TJ, Chien WW, Lurie KG, et al.Radiofrequency catheter ablation for treatment of bundle branch reentrant ventricular tachycardia: results and long-term follow-up. J Am Coll Cardiol 1991;18:1767–1773. PubMed
Crijns HJ, Kingma JH, Gosselink AT, Lie K. Comparison in the same patient of aberrant conduction and bundle branch reentry after dofetilide, a new selective class III antiarrhythmic agent. Pacing Clin Electrophysiol 1993;16:1006–1016. PubMed
Nogami A Purkinje-related arrhythmias. Part I: Monomorphic ventricular achycardias. Pacing Clin Electrophysiol 2011;34:624–650. PubMed
Nogami A Idiopathic left ventricular tachycardia: assessment and treatment. Card Electrophysiol Rev 2002;6:448–457. PubMed
Morishima I, Nogami A, Tsuboi H, Sone T. Verapamil-sensitive left anterior fascicular ventricular tachycardia associated with a healed myocardial infarction: changes in the delayed Purkinje potential during sinus rhythm. J Interv Card Electrophysiol 2008;22:233–237. PubMed
Hayashi M, Kobayashi Y, Iwasaki YK, et al.Novel mechanism of postinfarction ventricular tachycardia originating in surviving left posterior Purkinje fibers. Heart Rhythm 2006;3:908–918. PubMed
Bogun F, Good E, Reich S, et al.Role of Purkinje fibers in post-infarction ventricular tachycardia. J Am Coll Cardiol 2006;48:2500–2507. PubMed
Metzner A, Ouyang F, Wissner E, Kuck KH. Monomorphic and polymorphic ventricular tachycardias arising from the His-Purkinje system: what do we know? Future Cardiol 2011;7:835–846. PubMed
Talib AK, Nogami A, Morishima I, et al.Non-reentrant fascicular tachycardia: clinical and electrophysiological characteristics of a distinct type of idiopathic ventricular tachycardia. Circ Arrhythm Electrophysiol 2016;9:e004177. PubMed
Markowitz SM, Stein KM, Engelstein ED, Lerman BB. AV nodal-His-Purkinje reentry: a novel form of tachycardia. J Cardiovasc Electrophysiol 1995;6:400–409. PubMed
Tchou P, Jazayeri M, Denker S, Dongas J, Caceres J, Akhtar M. Transcatheter electrical ablation of right bundle branch: a method of treating macroreentrant ventricular tachycardia attributed to bundle branch reentry. Circulation 1988;78:246–257. PubMed
Mehdirad AA, Keim S, Rist K, Tchou P. Long-term clinical outcome of right bundle branch radiofrequency catheter ablation for treatment of bundle branch reentrant ventricular tachycardia. Pacing Clin Electrophysiol 1995;18:2135–2143. PubMed
Schmidt B, Tang M, Chun KR, et al.Left bundle branch-Purkinje system in patients with bundle branch reentrant tachycardia: lessons from catheter ablation and electroanatomic mapping. Heart Rhythm 2009; 6:51–58. PubMed
Pathak RK, Fahed J, Santangeli P, et al.Long-term outcome of catheter ablation for treatment of bundle branch re-entrant tachycardia. JACC Clin Electrophysiol 2018;4:331–338. PubMed
Zipes DP, Foster PR, Troup PJ, Pedersen DH. Atrial induction of ventricular tachycardia: reentry versus triggered automaticity. Am J Cardiol 1979;44:1–8. PubMed
Belhassen B, Rotmensch HH, Laniado S. Response of recurrentsustained ventricular tachycardia to verapamil. Br Heart J 1981;46:679–682. PubMed PMC
Ohe T, Shimomura K, Aihara N, et al.Idiopathic sustained left ventricular tachycardia: clinical and electrophysiologic characteristics. Circulation 1988;77:560–568. PubMed
Nogami A Idiopathic left ventricular tachycardia: assessment and treatment. Card Electrophysiol Rev 2002;6:448–457. PubMed
Talib AK, Nogami A, Nishiuchi S, et al.Verapamil-sensitive upper septal idiopathic left ventricular tachycardia: prevalence, mechanism, and electrophysiological characteristics. JACC Clin Electrophysiol 2015;1:369–380. PubMed
Nishiuchi S, Nogami A, Naito S. A case with occurrence of antidromic tachycardia after ablation of idiopathic left fascicular tachycardia: mechanism of left upper septal ventricular tachycardia. J Cardiovasc Electrophysiol 2013;24:825–827. PubMed
Komatsu Y, Nogami A, Kurosaki K, et al.Fascicular ventricular tachycardia originating from papillary muscles: Purkinje network involvement in the reentrant circuit. Circ Arrhythm Electrophysiol 2017; 10:e004549. PubMed
Gallagher JJ, Selle JG, Svenson RH, et al.Surgical treatment of arrhythmias. Am J Cardiol 1988;61:27A–44A. PubMed
Suwa M, Yoneda Y, Nagao H, et al.Surgical correction of idiopathic paroxysmal ventricular tachycardia possibly related to left ventricular false tendon. Am J Cardiol 1989;64:1217–1220. PubMed
Thakur RK, Klein GJ, Sivaram CA, et al.Anatomic substrate for idiopathic left ventricular tachycardia. Circulation 1996;93:497–501. PubMed
Maruyama M, Terada T, Miyamoto S, Ino T. Demonstration of the reentrant circuit of verapamil-sensitive idiopathic left ventricular tachycardia: direct evidence for macroreentry as the underlying mechanism. J Cardiovasc Electrophysiol 2001;12:968–972. PubMed
Nogami A, Naito S, Tada H, et al.Demonstration of diastolic and presystolic Purkinje potential as critical potentials on a macroreentry circuit of verapamil-sensitive idiopathic left ventricular tachycardia. J Am Coll Cardiol 2000;36:811–823. PubMed
Nogami A, Naito S, Tada H, et al.Verapamil-sensitive left anterior fascicular ventricular tachycardia: results of radiofrequency ablation in six patients. J Cardiovasc Electrophysiol 1998;9:1269–1278. PubMed
Lin D, Hsia HH, Gerstenfeld EP, et al.Idiopathic fascicular left ventricular tachycardia: linear ablation lesion strategy for noninducible or nonsustained tachycardia. Heart Rhythm 2005;2:934–939. PubMed
Nogami A, Tada H. Ablation of idiopathic left and right ventricular and fascicular tachycardias. In: Huang SKS, Miler JM, eds. Catheter Ablation of Cardiac Arrhythmias, 3rd ed. Philadelphia: Elsevier Saunders; 2015, p. 540–578.
Tsuchiya T, Okumura K, Honda T, et al.Significance of late diastolic potential preceding Purkinje potential in verapamil-sensitive idiopathic left ventricular tachycardia. Circulation 1999;99:2408–2413. PubMed
Talib AK, Nogami A, Morishima I, et al.Non-reentrant fascicular tachycardia: clinical and electrophysiological characteristics of a distinct type of idiopathic ventricular tachycardia. Circ Arrhythm Electrophysiol 2016;9:e004177. PubMed
Lerman BB, Stein KM, Markowitz SM. Mechanisms of idiopathic ventricular tachycardia. J Cardiovasc Electrophysiol 1997;8:571–583. PubMed
Lopera G, Stevenson WG, Soejima K, et al.Identification and ablation of three types of ventricular tachycardia involving the His-Purkinje system in patients with heart disease. J Cardiovasc Electrophysiol 2004; 15:52–58. PubMed
Gonzalez RP, Scheinman MM, Lesh MD, Helmy I, Torres V, Van Hare GF. Clinical and electrophysiologic spectrum of fascicular tachycardias. Am Heart J 1994;128:147–156. PubMed
Rodriguez LM, Smeets JL, Timmermans C, Trappe HJ, Wellens HJ. Radiofrequency catheter ablation of idiopathic ventricular tachycardia originating in the anterior fascicle of the left bundle branch. J Cardiovasc Electrophysiol 1996;7:1211–1216. PubMed
de Bakker JM, Coronel R, Tasseron S, et al.Ventricular tachycardia in the infarcted, Langendorff-perfused human heart: role of the arrangement of surviving cardiac fibers. J Am Coll Cardiol 1990;15:1594–1607. PubMed
de Bakker JM, van Capelle FJ, Janse MJ, et al.Macroreentry in the infarcted human heart: the mechanism of ventricular tachycardias with a “focal” activation pattern. J Am Coll Cardiol 1991;18:1005–1014. PubMed
Kaltenbrunner W, Cardinal R, Dubuc M, et al.Epicardial and endocardial mapping of ventricular tachycardia in patients with myocardial infarction. Is the origin of the tachycardia always subendocardially localized? Circulation 1991;84:1058–1071. PubMed
Downar E, Harris L, Mickleborough LL, Shaikh N, Parson ID. Endocardial mapping of ventricular tachycardia in the intact human ventricle: evidence for reentrant mechanisms. J Am Coll Cardiol 1988;11:783–791. PubMed
Das MK, Scott LR, Miller JM. Focal mechanism of ventricular tachycardia in coronary artery disease. Heart Rhythm 2010;7:305–311. PubMed
de Bakker JM, van Capelle FJ, Janse MJ, et al.Slow conduction in the infarcted human heart. “Zigzag” course of activation. Circulation 1993; 88:915–926. PubMed
de Bakker JM, van Capelle FJ, Janse MJ, et al.Reentry as a cause of ventricular tachycardia in patients with chronic ischemic heart disease: electrophysiologic and anatomic correlation. Circulation 1988;77:589–606. PubMed
Wijnmaalen AP, Schalij MJ, von der Thusen JH, Klautz RJ, Zeppenfeld K. Early reperfusion during acute myocardial infarction affects ventricular tachycardia characteristics and the chronic electroanatomic and histological substrate. Circulation 2010;121:1887–1895. PubMed
Piers SR,Wijnmaalen AP,Borleffs CJ,et al..Early reperfusion therapy affects inducibility, cycle length, and occurrence of ventricular tachycardia late after myocardial infarction. Circ Arrhythm Electrophysiol 2011;4:195–201. PubMed
Della Bella P, De Ponti R, Uriarte JA, et al.Catheter ablation and antiarrhythmic drugs for haemodynamically tolerated post-infarction ventricular tachycardia; long-term outcome in relation to acute electrophysiological findings. Eur Heart J 2002;23:414–424. PubMed
Yokokawa M, Kim HM, Baser K, et al.Predictive value of programmed ventricular stimulation after catheter ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2015;65:1954–1959. PubMed
de Riva M, Piers SR, Kapel GF, et al.Reassessing noninducibility as ablation endpoint of post-infarction ventricular tachycardia: the impact of left ventricular function. Circ Arrhythm Electrophysiol 2015;8:853–862. PubMed
Di Biase L, Burkhardt JD, Lakkireddy D, et al.Ablation of stable VTs versus substrate ablation in ischemic cardiomyopathy: the VISTA randomized multicenter trial. J Am Coll Cardiol 2015;66:2872–2882. PubMed
Yoshida K, Liu TY, Scott C, et al.The value of defibrillator electrograms for recognitionofclinicalventricular tachycardias and for pace mapping ofpostinfarction ventricular tachycardia. J Am Coll Cardiol 2010;56:969–979. PubMed
Silberbauer J, Oloriz T, Maccabelli G, et al.Noninducibility and late potential abolition: a novel combined prognostic procedural end point for catheter ablation of postinfarction ventricular tachycardia. Circ Arrhythm Electrophysiol 2014;7:424–435. PubMed
Wolf M, Sacher F, Cochet H, et al.Long-term outcome of substrate modification in ablation of post-myocardial infarction ventricular tachycardia. Circ Arrhythm Electrophysiol 2018;11:e005635. PubMed
Kuck KH, Tilz RR, Deneke T, et al.Impact of substrate modification by catheter ablation on implantable cardioverter-defibrillator interventions in patients with unstable ventricular arrhythmias and coronary artery disease: results from the Multicenter Randomized Controlled SMS (Substrate Modification Study). Circ Arrhythm Electrophysiol 2017;10:e004422. PubMed
Stevenson WG, Wilber DJ, Natale A, et al.Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Calkins H, Epstein A, Packer D, et al.; Cooled RF Multi Center Investigators Group. Catheter ablation of ventricular tachycardia in patients with structural heart disease using cooled radiofrequency energy: results of a prospective multicenter study. J Am Coll Cardiol 2000; 35:1905–1914. PubMed
Tanner H, Hindricks G, Volkmer M, et al.Catheter ablation of recurrent scar-related ventricular tachycardia using electroanatomical mapping and irrigated ablation technology: results of the prospective multicenter Euro-VT-study. J Cardiovasc Electrophysiol 2010;21:47–53. PubMed
Ghanbari H, Baser K, Yokokawa M, et al.Noninducibility in postinfarction ventricular tachycardia as an end point for ventricular tachycardia ablation and its effects on outcomes: a meta-analysis. Circ Arrhythm Electrophysiol 2014;7:677–683. PubMed
Watanabe M,deRiva M,Piers SRD,et al.Fastnonclinical ventricular tachycardia inducible after ablation in patients with structural heart disease: definition and clinical implications. Heart Rhythm 2018;15:668–676. PubMed
Soejima K, Suzuki M, Maisel WH, et al.Catheter ablation in patients with multiple and unstable ventricular tachycardias after myocardial infarction: short ablation lines guided by reentry circuit isthmuses and sinus rhythm mapping. Circulation 2001;104:664–669. PubMed
Marchlinski FE, Callans DJ, Gottlieb CD, Zado E. Linear ablation lesions for control of unmappable ventricular tachycardia in patients with ischemic and nonischemic cardiomyopathy. Circulation 2000;101:1288–1296. PubMed
Wrobleski D, Houghtaling C, Josephson ME, Ruskin JN, Reddy VY. Use of electrogram characteristics during sinus rhythm to delineate the endocardial scar in a porcine model of healed myocardial infarction. J Cardiovasc Electrophysiol 2003;14:524–529. PubMed
Reddy VY, Wrobleski D, Houghtaling C, Josephson ME, Ruskin JN. Combined epicardial and endocardial electroanatomic mapping in a porcine model of healed myocardial infarction. Circulation 2003;107:3236–3242. PubMed
Wijnmaalen AP, van der Geest RJ, van Huls van Taxis CF, et al.Head-to-head comparison of contrast-enhanced magnetic resonance imaging and electroanatomical voltage mapping to assess post-infarct scar characteristics in patients with ventricular tachycardias: real-time image integration and reversed registration. Eur Heart J 2011;32:104–114. PubMed
Verma A, Marrouche NF, Schweikert RA, et al.Relationship between successful ablation sites and the scar border zone defined by substrate mapping for ventricular tachycardia post-myocardial infarction. J Cardiovasc Electrophysiol 2005;16:465–471. PubMed
Marchlinski FE, Haffajee CI, Beshai JF, et al.Long-term success of irrigated radiofrequency catheter ablation of sustained ventricular tachycardia: post-approval THERMOCOOL VT trial. J Am Coll Cardiol 2016;67:674–683. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl J Med 2007;357:2657–2665. PubMed PMC
Jais P, Maury P, Khairy P, et al.Elimination of local abnormal ventricular activities: a new end point for substrate modification in patients with scar-related ventricular tachycardia. Circulation 2012;125:2184–2196. PubMed
Acosta J, Andreu D, Penela D, et al.Elucidation of hidden slow conduction by double ventricular extrastimuli: a method for further arrhythmic substrate identification in ventricular tachycardia ablation procedures. Europace 2018;20:337–346. PubMed
de Riva M, Naruse Y, Ebert M, et al.Targeting the hidden substrate unmasked by right ventricular extrastimulation improves ventricular tachycardia ablation outcome after myocardial infarction. JACC Clin Electrophysiol 2018;4:316–327. PubMed
Porta-Sánchez A, Jackson N, Lukac P, et al.Multicenter study of ischemic ventricular tachycardia ablation with decrement-evoked potential (DEEP) mapping with extra stimulus. JACC Clin Electrophysiol 2018;4:307–315. PubMed
Tilz RR, Makimoto H, Lin T, et al.Electrical isolation of a substrate after myocardial infarction: a novel ablation strategy for unmappable ventricular tachycardias–feasibility and clinical outcome. Europace 2014; 16:1040–1052. PubMed
Tzou WS, Frankel DS, Hegeman T, et al.Core isolation of critical arrhythmia elements for treatment of multiple scar-based ventricular tachycardias. Circ Arrhythm Electrophysiol 2015;8:353–361. PubMed
Berruezo A, Fernandez-Armenta J, Andreu D, et al.Scar dechanneling: new method for scar-related left ventricular tachycardia substrate ablation. Circ Arrhythm Electrophysiol 2015;8:326–336. PubMed
Arenal A, Glez-Torrecilla E, Ortiz M, et al.Ablation of electrograms with an isolated, delayed component as treatment of unmappable monomorphic ventricular tachycardias in patients with structural heart disease. J Am Coll Cardiol 2003;41:81–92. PubMed
Irie T, Yu R, Bradfield JS, et al.Relationship between sinus rhythm late activation zones and critical sites for scar-related ventricular tachycardia: systematic analysis of isochronal late activation mapping. Circ Arrhythm Electrophysiol 2015;8:390–399. PubMed PMC
Kuck KH, Schaumann A, Eckardt L, et al.Catheter ablation of stable ventricular tachycardia before defibrillator implantation in patients with coronary heart disease (VTACH): a multicentre randomised controlled trial. Lancet 2010;375:31–40. PubMed
Yokokawa M, Desjardins B, Crawford T, Good E, Morady F, Bogun F. Reasons for recurrent ventricular tachycardia after catheter ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2013;61:66–73. PubMed
Briceño DF, Romero J, Villablanca PA, et al.Long-term outcomes of different ablation strategies for ventricular tachycardia in patients with structural heart disease: systematic review and meta-analysis. Europace 2018;20:104–115. PubMed
Di Biase L, Santangeli P, Burkhardt DJ, et al.Endo-epicardial homogenization of the scar versus limited substrate ablation for the treatment of electrical storms in patients with ischemic cardiomyopathy. J Am Coll Cardiol 2012;60:132–141. PubMed
Nakahara S, Tung R, Ramirez RJ, et al.Distribution of late potentials within infarct scars assessed by ultra high-density mapping. Heart Rhythm 2010;7:1817–1824. PubMed
Anter E, Tschabrunn CM, Buxton AE, Josephson ME. High-resolution mapping of postinfarction reentrant ventricular tachycardia: electrophysiological characterization of the circuit. Circulation 2016;134:314–327. PubMed PMC
Berte B, Relan J, Sacher F, et al.Impact of electrode type on mapping of scar-related VT. J Cardiovasc Electrophysiol 2015;26:1213–1223. PubMed
Leshem E, Tschabrunn CM, Jang J, et al.High-resolution mapping of ventricular scar: evaluation of a novel integrated multielectrode mapping and ablation catheter. JACC Clin Electrophysiol 2017;3:220–231. PubMed
Tschabrunn CM, Roujol S, Dorman NC, Nezafat R, Josephson ME, Anter E. High-resolution mapping of ventricular scar: comparison between single and multielectrode catheters. Circ Arrhythm Electrophysiol 2016; 9:e003841. PubMed PMC
Tung R, Josephson ME, Bradfield JS, Shivkumar K. Directional influences of ventricular activation on myocardial scar characterization: voltage mapping with multiple wavefronts during ventricular tachycardia ablation. Circ Arrhythm Electrophysiol 2016;9:e004155. PubMed
Andreu D, Penela D, Acosta J, Fernandez-Armenta J, et al.Cardiac magnetic resonance-aided scar dechanneling: influence on acute and long-term outcomes. Heart Rhythm 2017;14:1121–1128. PubMed
Ghannam M, Cochet H, Jais P, et al.Correlation between computer tomography-derived scar topography and critical ablation sites in postinfarction ventricular tachycardia. J Cardiovasc Electrophysiol 2018;29:438–445. PubMed
Martinek M, Stevenson WG, Inada K, Tokuda M, Tedrow UB. QRS characteristics fail to reliably identify ventricular tachycardias that require epicardial ablation in ischemic heart disease. J Cardiovasc Electrophysiol 2012;23:188–193. PubMed
Komatsu Y, Daly M, Sacher F, et al.Endocardial ablation to eliminate epicardial arrhythmia substrate in scar-related ventricular tachycardia. J Am Coll Cardiol 2014;63:1416–1426. PubMed
Sapp JL, Wells GA, Parkash R, et al.Ventricular tachycardia ablation versus escalation of antiarrhythmic drugs. N Engl J Med 2016;375:111–121. PubMed
Sarkozy A, Tokuda M, Tedrow UB, et al.Epicardial ablation of ventricular tachycardia in ischemic heart disease. Circ Arrhythm Electrophysiol 2013; 6:1115–1122. PubMed
Soejima K, Couper G, Cooper JM, Sapp JL, Epstein LM, Stevenson WG. Subxiphoid surgical approach for epicardial catheter-based mapping and ablation in patients with prior cardiac surgery or difficult pericardial access. Circulation 2004;110:1197–1201. PubMed
Sacher F, Roberts-Thomson K, Maury P, et al.Epicardial ventricular tachycardia ablation a multicenter safety study. J Am Coll Cardiol 2010; 55:2366–2372. PubMed
Acosta J, Fernandez-Armenta J,Penela D,et al.Infarct transmurality asa criterion for first-line endo-epicardial substrate-guided ventricular tachycardia ablation in ischemic cardiomyopathy. Heart Rhythm 2016;13:85–95. PubMed
Izquierdo M, Sánchez-Gómez JM, Ferrero de Loma-Osorio A, et al.Endo-epicardial versus only-endocardial ablation as a first line strategy for the treatment of ventricular tachycardia in patients with ischemic heart disease. Circ Arrhythm Electrophysiol 2015;8:882–889. PubMed
McNally EM, Mestroni L. Dilated cardiomyopathy: genetic determinants and mechanisms. Circ Res 2017;121:731–748. PubMed PMC
Ellenbogen KA, Levine JH, Berger RD, et al.; Defibrillators in Non-Ischemic Cardiomyopathy Treatment Evaluation (DEFINITE) Investigators. Are implantable cardioverter defibrillator shocks a surrogate for sudden cardiac death in patients with nonischemic cardiomyopathy? Circulation 2006; 113:776–782. PubMed
Kober L, Thune JJ, Nielsen JC, et al.Defibrillator implantation in patients with nonischemic systolic heart failure. N Engl J Med 2016; 375:1221–1230. PubMed
Gatzoulis KA, Vouliotis AI, Tsiachris D, et al.Primary prevention of sudden cardiac death in a nonischemic dilated cardiomyopathy population: reappraisal of the role of programmed ventricular stimulation. Circ Arrhythm Electrophysiol 2013;6:504–512. PubMed
Aldhoon B, Tzou WS, Riley MP, et al.Nonischemic cardiomyopathy substrate and ventricular tachycardia in the setting of coronary artery disease. Heart Rhythm 2013;10:1622–1627. PubMed
Delacretaz E, Stevenson WG, Ellison KE, Maisel WH, Friedman PL. Mapping and radiofrequency catheter ablation of the three types of sustained monomorphic ventricular tachycardia in nonischemic heart disease. J Cardiovasc Electrophysiol 2000;11:11–17. PubMed
Lopera G, Stevenson WG, Soejima K, et al.Identification and ablation of three types of ventricular tachycardia involving the His-Purkinje system in patients with heart disease. J Cardiovasc Electrophysiol 2004;15:52–58. PubMed
Soejima K, Stevenson WG, Sapp JL, Selwyn AP, Couper G, Epstein LM. Endocardial and epicardial radiofrequency ablation of ventricular tachycardia associated with dilated cardiomyopathy: the importance of low-voltage scars. J Am Coll Cardiol 2004;43:1834–1842. PubMed
Gulati A, Jabbour A, Ismail TF, et al.Association of fibrosis with mortality and sudden cardiac death in patients with nonischemic dilated cardiomyopathy. JAMA 2013;309:896–908. PubMed
Perazzolo Marra M, De Lazzari M, et al.Impact of the presence and amount of myocardial fibrosis by cardiac magnetic resonance on arrhythmic outcome and sudden cardiac death in nonischemic dilated cardiomyopathy. Heart Rhythm 2014;11:856–863. PubMed
Piers SR, Everaerts K, van der Geest RJ, et al.Myocardial scar predicts monomorphic ventricular tachycardia but not polymorphic ventricular tachycardia or ventricular fibrillation in nonischemic dilated cardiomyopathy. Heart Rhythm 2015;12:2106–2114. PubMed
Piers SR, Tao Q, van Huls van Taxis CF, Schalij MJ, van der Geest RJ, Zeppenfeld K. Contrast-enhanced MRI-derived scar patterns and associated ventricular tachycardias in nonischemic cardiomyopathy: implications for the ablation strategy. Circ Arrhythm Electrophysiol 2013;6:875–883. PubMed
Piers SR, Tao Q, de Riva Silva M, et al.CMR-based identification of critical isthmus sites of ischemic and nonischemic ventricular tachycardia. JACC Cardiovasc Imaging 2014;7:774–784. PubMed
Piers SR, Silva Mde R, Kapel GF, Trines SA, Schalij MJ, Zeppenfeld K. Endocardial or epicardial ventricular tachycardia in nonischemic cardiomyopathy? The role of 12-lead ECG criteria in clinical practice. Heart Rhythm 2014;11:1031–1039. PubMed
Njeim M, Yokokawa M, Frank L, et al.Value of cardiac magnetic resonance imaging in patients with failed ablation procedures for ventricular tachycardia. J Cardiovasc Electrophysiol 2016;27:183–189. PubMed
Desjardins B, Yokokawa M, Good E, et al.Characteristics of intramural scar in patients with nonischemic cardiomyopathy and relation to intramural ventricular arrhythmias. Circ Arrhythm Electrophysiol 2013;6:891–897. PubMed
Sasaki T, Miller CF, Hansford R, et al.Impact of nonischemic scar features on local ventricular electrograms and scar-related ventricular tachycardia circuits in patients with nonischemic cardiomyopathy. Circ Arrhythm Electrophysiol 2013;6:1139–1147. PubMed PMC
Betensky BP, Dong W, D’Souza BA, Zado ES, Han Y, Marchlinski FE. Cardiac magnetic resonance imaging and electroanatomic voltage discordance in non-ischemic left ventricle ventricular tachycardia and premature ventricular depolarizations. J Interv Card Electrophysiol 2017;49:11–19. PubMed
Siontis KC, Kim HM, Sharaf Dabbagh G, et al.Association of preprocedural cardiac magnetic resonance imaging with outcomes of ventricular tachycardia ablation in patients with idiopathic dilated cardiomyopathy. Heart Rhythm 2017;14:1487–1493. PubMed
Oloriz T, Silberbauer J, Maccabelli G, et al.Catheter ablation of ventricular arrhythmia in nonischemic cardiomyopathy: anteroseptal versus inferolateral scar sub-types. Circ Arrhythm Electrophysiol 2014;7:414–423. PubMed
Dinov B, Fiedler L, Schonbauer R, et al.Outcomes in catheter ablation of ventricular tachycardia in dilated nonischemic cardiomyopathy compared with ischemic cardiomyopathy: results from the Prospective Heart Centre of Leipzig VT (HELP-VT) Study. Circulation 2014;129:728–736. PubMed
Muser D, Santangeli P, Castro SA, et al.Long-term outcome after catheter ablation of ventricular tachycardia in patients with nonischemic dilated cardiomyopathy. Circ Arrhythm Electrophysiol 2016;9:e004328. PubMed
Proietti R, Essebag V, Beardsall J, et al.Substrate-guided ablation of haemodynamically tolerated and untolerated ventricular tachycardia in patients with structural heart disease: effect of cardiomyopathy type and acute success on long-term outcome. Europace 2015;17:461–467. PubMed
Nakahara S, Tung R, Ramirez RJ, et al.Characterization of the arrhythmogenic substrate in ischemic and nonischemic cardiomyopathy implications for catheter ablation of hemodynamically unstable ventricular tachycardia. J Am Coll Cardiol 2010;55:2355–2365. PubMed PMC
Kuhne M, Abrams G, Sarrazin JF, et al.Isolated potentials and pace-mapping as guides for ablation of ventricular tachycardia in various types of nonischemic cardiomyopathy. J Cardiovasc Electrophysiol 2010; 21:1017–1023. PubMed
Komatsu Y, Maury P, Sacher F, et al.Impact of substrate-based ablation of ventricular tachycardia on cardiac mortality in patients with implantable cardioverter-defibrillators. J Cardiovasc Electrophysiol 2015;26:1230–1238. PubMed
Vergara P, Trevisi N, Ricco A, et al.Late potentials abolition as an additional technique for reduction of arrhythmia recurrence in scar related ventricular tachycardia ablation. J Cardiovasc Electrophysiol 2012;23:621–627. PubMed
Gokoglan Y, Mohanty S, Gianni C, et al.Scar homogenization versus limited-substrate ablation in patients with nonischemic cardiomyopathy and ventricular tachycardia. J Am Coll Cardiol 2016;68:1990–1998. PubMed
Muser D, Liang JJ, Pathak RK, et al.Long-term outcomes of catheter ablation of electrical storm in nonischemic dilated cardiomyopathy compared with ischemic cardiomyopathy. JACC Clin Electrophysiol 2017;3:767–778. PubMed
Hu J, Zeng S, Zhou Q, et al.Can ventricular tachycardia non-inducibility after ablation predict reduced ventricular tachycardia recurrence and mortality in patients with non-ischemic cardiomyopathy? A meta-analysis of twentyfour observational studies. Int J Cardiol 2016;222:689–695. PubMed
Dinov B, Arya A, Schratter A, et al.Catheter ablation of ventricular tachycardia and mortality in patients with nonischemic dilated cardiomyopathy: can noninducibility after ablation be a predictor for reduced mortality? Circ Arrhythm Electrophysiol 2015;8:598–605. PubMed
Watanabe M, de Riva M, Piers SRD, et al.Fast nonclinical ventricular tachycardia inducible after ablation in patients with structural heart disease: definition and clinical implications. Heart Rhythm 2018;15:668–676. PubMed
Haqqani HM, Tschabrunn CM, Tzou WS, et al.Isolated septal substrate for ventricular tachycardia in nonischemic dilated cardiomyopathy: incidence, characterization, and implications. Heart Rhythm 2011;8:1169–1176. PubMed
Valles E, Bazan V, Marchlinski FE. ECG criteria to identify epicardial ventricular tachycardia in nonischemic cardiomyopathy. Circ Arrhythm Electrophysiol 2010;3:63–71. PubMed
Schmidt B, Chun KR, Baensch D, et al.Catheter ablation for ventricular tachycardia after failed endocardial ablation: epicardial substrate or inappropriate endocardial ablation? Heart Rhythm 2010;7:1746–1752. PubMed
Tokuda M, Tedrow UB, Kojodjojo P, et al.Catheter ablation of ventricular tachycardia in nonischemic heart disease. Circ Arrhythm Electrophysiol 2012;5:992–1000. PubMed
Piers SR, van Huls van Taxis CF, Tao Q, et al.Epicardial substrate mapping for ventricular tachycardia ablation in patients with non-ischaemic cardiomyopathy: a new algorithm to differentiate between scar and viable myocardium developed by simultaneous integration of computed tomography and contrast-enhanced magnetic resonance imaging. Eur Heart J 2013; 34:586–596. PubMed
Glashan CA, Androulakis AFA, Tao Q, et al.Whole human heart histology to validate electroanatomical voltage mapping in patients with non-ischaemic cardiomyopathy and ventricular tachycardia. Eur Heart J 2018; 39:2867–2875. PubMed
Spears DA, Suszko AM, Dalvi R, et al.Relationship of bipolar and unipolar electrogram voltage to scar transmurality and composition derived by magnetic resonance imaging in patients with nonischemic cardiomyopathy undergoing VT ablation. Heart Rhythm 2012;9:1837–1846. PubMed
Hutchinson MD, Gerstenfeld EP, Desjardins B, et al.Endocardial unipolar voltage mapping to detect epicardial ventricular tachycardia substrate in patients with nonischemic left ventricular cardiomyopathy. Circ Arrhythm Electrophysiol 2011;4:49–55. PubMed PMC
Betensky BP, Kapa S, Desjardins B, et al.Characterization of trans-septal activation during septal pacing: criteria for identification of intramural ventricular tachycardia substrate in nonischemic cardiomyopathy. Circ Arrhythm Electrophysiol 2013;6:1123–1130. PubMed
Bala R, Ren JF, Hutchinson MD, et al.Assessing epicardial substrate using intracardiac echocardiography during VT ablation. Circ Arrhythm Electrophysiol 2011;4:667–673. PubMed PMC
Dinov B, Schratter A, Schirripa V, et al.Procedural outcomes and survival after catheter ablation of ventricular tachycardia in relation to electroanatomical substrate in patients with nonischemic-dilated cardiomyopathy: the role of unipolar voltage mapping. J Cardiovasc Electrophysiol 2015; 26:985–993. PubMed
Frankel DS, Tschabrunn CM, Cooper JM, et al.Apical ventricular tachycardia morphology in left ventricular nonischemic cardiomyopathy predicts poor transplant-free survival. Heart Rhythm 2013;10:621–626. PubMed
Maron BJ, Anan TJ, Roberts WC. Quantitative analysis of the distribution of cardiac muscle cell disorganization in the left ventricular wall of patients with hypertrophic cardiomyopathy. Circulation 1981;63:882–894. PubMed
Maron BJ. Contemporary insights and strategies for risk stratification and prevention of sudden death in hypertrophic cardiomyopathy. Circulation 2010;121:445–456. PubMed
Basso C, Thiene G, Corrado D, Buja G, Melacini P, Nava A. Hypertrophic cardiomyopathy and sudden death in the young: pathologic evidence of myocardial ischemia. Hum Pathol 2000;31:988–998. PubMed
Almaas VM, Haugaa KH, Strom EH, et al.Increased amount of interstitial fibrosis predicts ventricular arrhythmias, and is associated with reduced myocardial septal function in patients with obstructive hypertrophic cardiomyopathy. Europace 2013;15:1319–1327. PubMed
Rudolph A, Abdel-Aty H, Bohl S, et al.Noninvasive detection of fibrosis applying contrast-enhanced cardiac magnetic resonance in different forms of left ventricular hypertrophy relation to remodeling. J Am Coll Cardiol 2009;53:284–291. PubMed
Satoh H, Matoh F, Shiraki K, et al.Delayed enhancement on cardiac magnetic resonance and clinical, morphological, and electrocardiographical features in hypertrophic cardiomyopathy. J Card Fail 2009;15:419–427. PubMed
Rickers C, Wilke NM, Jerosch-Herold M, et al.Utility of cardiac magnetic resonance imaging in the diagnosis of hypertrophic cardiomyopathy. Circulation 2005;112:855–861. PubMed
Leonardi S, Raineri C, De Ferrari GM, et al.Usefulness of cardiac magnetic resonance in assessing the risk of ventricular arrhythmias and sudden death in patients with hypertrophic cardiomyopathy. Eur Heart J 2009; 30:2003–2010. PubMed
Maron BJ, Spirito P, Shen WK, et al.Implantable cardioverter-defibrillators and prevention of sudden cardiac death in hypertrophic cardiomyopathy. JAMA 2007;298:405–412. PubMed
Cha YM, Gersh BJ, Maron BJ, et al.Electrophysiologic manifestations of ventricular tachyarrhythmias provoking appropriate defibrillator interventions in high-risk patients with hypertrophic cardiomyopathy. J Cardiovasc Electrophysiol 2007;18:483–487. PubMed
Fananapazir L, Chang AC, Epstein SE, McAreavey D. Prognostic determinants in hypertrophic cardiomyopathy. Prospective evaluation of a therapeutic strategy based on clinical, holter, hemodynamic, and electrophysiological findings. Circulation 1992;86:730–740. PubMed
Dukkipati SR, d’Avila A, Soejima K, et al.Long-term outcomes of combined epicardial and endocardial ablation of monomorphic ventricular tachycardia related to hypertrophic cardiomyopathy. Circ Arrhythm Electrophysiol 2011;4:185–194. PubMed
Santangeli P, Di Biase L, Lakkireddy D, et al.Radiofrequency catheter ablation of ventricular arrhythmias in patients with hypertrophic cardiomyopathy: Safety and feasibility. Heart Rhythm 2010;7:1036–1042. PubMed
Ueda A, Fukamizu S, Soejima K, et al.Clinical and electrophysiological characteristics in patients with sustained monomorphic reentrant ventricular tachycardia associated with dilated-phase hypertrophic cardiomyopathy. Europace 2012;14:734–740. PubMed
Maron MS, Finley JJ, Bos JM, et al.Prevalence, clinical significance, and natural history of left ventricular apical aneurysms in hypertrophic cardiomyopathy. Circulation 2008;118:1541–1549. PubMed
Inada K, Seiler J, Roberts-Thomson KC, et al.Substrate characterization and catheter ablation for monomorphic ventricular tachycardia in patients with apical hypertrophic cardiomyopathy. J Cardiovasc Electrophysiol 2011; 22:41–48. PubMed
Igarashi M, Nogami A, Kurosaki K, et al.Radiofrequency catheter ablation of ventricular tachycardia in patients with hypertrophic cardiomyopathy and apical aneurysm. JACC Clin Electrophysiol 2018;4:339–350. PubMed
Kobayashi K, Ohata T, Ueda H, Miyamoto K. Recurrent sustained ventricular tachycardia, hypertrophic cardiomyopathy, and apical aneurysm: electroanatomic map-guided surgical ablation and left ventricular restoration. J Thorac Cardiovasc Surg 2013;146:983–985. PubMed
Shimahara Y, Kobayashi J, Fujita T, Sato S. Transapical myectomy and surgical cryoablation for refractory ventricular tachycardia due to hypertrophic cardiomyopathy with apical aneurysm. Eur J Cardiothorac Surg 2015; 48:334–335. PubMed
Ergul Y, Ozyilmaz I, Bilici M, Ozturk E, Haydin S, Guzeltas A. Radiofrequency ablation of fast ventricular tachycardia causing an ICD storm in an infant with hypertrophic cardiomyopathy. Pacing Clin Electrophysiol 2018;41:425–428. PubMed
Haissaguerre M, Extramiana F, Hocini M, et al.Mapping and ablation of ventricular fibrillation associated with long-QT and Brugada syndromes. Circulation 2003;108:925–928. PubMed
Nademanee K, Hocini M, Haissaguerre M. Epicardial substrate ablation for Brugada syndrome. Heart Rhythm 2017;14:457–461. PubMed
Andorin A, Gourraud JB, Mansourati J, et al.The QUIDAM study: hydroquinidine therapy for the management of Brugada syndrome patients at high arrhythmic risk. Heart Rhythm 2017;14:1147–1154. PubMed
Vutthikraivit W, Rattanawong P, Putthapiban P, et al.Worldwide prevalence of Brugada syndrome: a systematic review and meta-analysis. Acta Cardiol Sin 2018;34:267–277. PubMed PMC
Brugada P, Brugada J. Right bundle branch block, persistent ST segment elevation and sudden cardiac death: a distinct clinical and electrocardiographic syndrome. A multicenter report. J Am Coll Cardiol 1992; 20:1391–1396. PubMed
Bayes de Luna A, Brugada J, Baranchuk A, et al.Current electrocardiographic criteria for diagnosis of Brugada pattern: a consensus report. J Electrocardiol 2012;45:433–442. PubMed
Viswanathan S, Aghoram R. Brugada syndrome in patients with acute febrile illness. Indian Heart J 2018;70:416–420. PubMed PMC
Konigstein M, Rosso R, Topaz G, et al.Drug-induced Brugada syndrome: clinical characteristics and risk factors. Heart Rhythm 2016; 13:1083–1087. PubMed
Xu G, Gottschalk BH, Anselm DD, et al.Relation of the Brugada phenocopy to hyperkalemia (from the International Registry on Brugada Phenocopy). Am J Cardiol 2018;121:715–717. PubMed
Hunuk B, Kepez A, Erdogan O. Prevalence of Brugada-type electrocardiogram pattern by recording right precordial leads at higher intercostal spaces. Europace 2013;15:590–594. PubMed
Holst AG, Tango M, Batchvarov V, et al.Specificity of elevated intercostal space ECG recording for the type 1 Brugada ECG pattern. Ann Noninvasive Electrocardiol 2012;17:108–112. PubMed PMC
Dendramis G Brugada syndrome and Brugada phenocopy. The importance of a differential diagnosis. Int J Cardiol 2016;210:25–27. PubMed
Watanabe H, Minamino T. Genetics of Brugada syndrome. J Hum Genet 2016;61:57–60. PubMed
Postema PG, van Dessel PF, Kors JA, et al.Local depolarization abnormalities are the dominant pathophysiologic mechanism for type 1 electrocardiogram in Brugada syndrome a study of electrocardiograms, vectorcardiograms, and body surface potential maps during ajmaline provocation. J Am Coll Cardiol 2010;55:789–797. PubMed
Bueno-Orovio A, Cherry EM, Evans SJ, Fenton FH. Basis for the induction of tissue-level phase-2 reentry as a repolarization disorder in the Brugada syndrome. Biomed Res Int 2015;2015. 197586. PubMed PMC
Lambiase PD, Ahmed AK, Ciaccio EJ, et al.High-density substrate mapping in Brugada syndrome: combined role of conduction and repolarization heterogeneities in arrhythmogenesis. Circulation 2009;120:106–117. PubMed
Ohkubo K, Watanabe I, Okumura Y, et al.Right ventricular histological substrate and conduction delay in patients with Brugada syndrome. Int Heart J 2010;51:17–23. PubMed
Nademanee K, Veerakul G, Chandanamattha P, et al.Prevention of ventricular fibrillation episodes in Brugada syndrome by catheter ablation over the anterior right ventricular outflow tract epicardium. Circulation 2011;123:1270–1279. PubMed
Krieger K,Steinfurt J,Lenz C,Keweloh B.CatheterablationofBrugadasyndrome: importance of repeated administration of ajmaline to unmask the entire epicardial substrate. JACC Clin Electrophysiol 2017;3:1330–1332. PubMed
Chung FP, Raharjo SB, Lin YJ, et al.A novel method to enhance phenotype, epicardial functional substrates, and ventricular tachyarrhythmias in Brugada syndrome. Heart Rhythm 2017;14:508–517. PubMed
Pappone C, Ciconte G, Manguso F, et al.Assessing the malignant ventricular arrhythmic substrate in patients with Brugada syndrome. J Am Coll Cardiol 2018;71:1631–1646. PubMed
Zhang P, Tung R, Zhang Z, et al.Characterization of the epicardial substrate for catheter ablation of Brugada syndrome. Heart Rhythm 2016; 13:2151–2158. PubMed
Shah AJ, Hocini M, Lamaison D, Sacher F, Derval N, Haissaguerre M. Regional substrate ablation abolishes Brugada syndrome. J Cardiovasc Electrophysiol 2011;22:1290–1291. PubMed
Watanabe A, Fukushima Kusano K, Morita H, et al.Low-dose isoproterenol for repetitive ventricular arrhythmia in patients with Brugada syndrome. Eur Heart J 2006;27:1579–1583. PubMed
Omiya T, Shimizu A, Ueyama T, et al.Effects of isoproterenol and propranolol on the inducibility and frequency of ventricular fibrillation in patients with Brugada syndrome. J Cardiol 2012;60:47–54. PubMed
Shan Q, Yang B, Chen M, et al.Short-term normalization of ventricular repolarization by transcatheter ablation in a patient with suspected Brugada syndrome. J Interv Card Electrophysiol 2008;21:53–57. PubMed
Nakagawa E, Takagi M, Tatsumi H, Yoshiyama M. Successful radiofrequency catheter ablation for electrical storm of ventricular fibrillation in a patient with Brugada syndrome. Circ J 2008;72:1025–1029. PubMed
Rodriguez-Manero M, Sacher F, de Asmundis C, et al.Monomorphic ventricular tachycardia in patients with Brugada syndrome: a multicenter retrospective study. Heart Rhythm 2016;13:669–682. PubMed
Fernandes GC, Fernandes A, Cardoso R, et al.Ablation strategies for the management of symptomatic Brugada syndrome: a systematic review. Heart Rhythm 2018;15:1140–1147. PubMed
Brugada J, Pappone C, Berruezo A, et al.Brugada syndrome phenotype elimination by epicardial substrate ablation. Circ Arrhythm Electrophysiol 2015;8:1373–1381. PubMed
Lim PCY, Nademanee K, Lee ECY, Teo WS. Epicardial ablation utilizing remote magnetic navigation in a patient with Brugada syndrome and inferior early repolarization. Pacing Clin Electrophysiol 2018; 41:214–217. PubMed
Lee A, Kohler H, Wright D, Haqqani HM. Epicardial Brugada syndrome ablation unmasking inferior J waves. Pacing Clin Electrophysiol 2017; 40:1308–1312. PubMed
Pappone C, Brugada J, Vicedomini G, et al.Electrical substrate elimination in 135 consecutive patients with Brugada syndrome. Circ Arrhythm Electrophysiol 2017;10:e005053. PubMed
Haïssaguerre M, Shoda M, Jaïs P, et al.Mapping and ablation of idiopathic ventricular fibrillation. Circulation 2002;106:962–967. PubMed
Haïssaguerre M, Shah DC, Jaïs P, et al.Role of Purkinje conducting system in triggering of idiopathic ventricular fibrillation. Lancet 2002;359:677–678. PubMed
Haïssaguerre M, Extraminiana F, Hocini M, et al.Mapping and ablation of ventricular fibrillation associated with long-QT and Brugada syndromes. Circulation 2003;108:925–928. PubMed
Bansch D, Ouyang F, Antz M, et al.Successful catheter ablation of electrical storm after myocardial infarction. Circulation 2003;108:3011–3016. PubMed
Marrouche NF, Verma A, Wazni O, et al.Mode of initiation and ablation of ventricular fibrillation storms in patients with ischemic cardiomyopathy. J Am Coll Cardiol 2004;43:1715–1720. PubMed
Bode K, Hindricks G, Piorkowski C, et al.Ablation of polymorphic ventricular tachycardias in patients with structural heart disease. Pacing Clin Electrophysiol 2008;31:1585–1591. PubMed
Knecht S, Sacher F, Wright M, et al.Long-term follow-up of idiopathic ventricular fibrillation ablation: a multicenter study. J Am Coll Cardiol 2009; 54:522–528. PubMed
Peichl P, Cihak R, Kozeluhova M, Wichterle D, Vancura V, Kautzner J. Catheter ablation of arrhythmic storm triggered by monomorphic ectopic beats in patients with coronary artery disease. J Interv Card Electrophysiol 2010; 27:51–59. PubMed
Van Herendael H, Zado ES, Haqqani H, et al.Catheter ablation of ventricular fibrillation; importance of left ventricular outflow tract and papillary muscle triggers. Heart Rhythm 2014;11:566–573. PubMed
Basso C, Corrado D, Markus FI, Nava A, Thiene G. Arrhythmogenic right ventricular cardiomyopathy. Lancet 2009;373:1289–1300. PubMed
Boulos M, Lashevsky I, Reisner S, Gepstein L. Electroanatomic mapping of arrhythmogenic right ventricular dysplasia. J Am Coll Cardiol 2001; 38:2020–2027. PubMed
Te Riele AS, James CA, Philips B, et al.Mutation-positive arrhythmogenic right ventricular dysplasia/cardiomyopathy: the triangle of dysplasia displaced. J Cardiovasc Electrophysiol 2013; 24:1311–1320. PubMed PMC
Fernandez-Armenta J, Andreu D, Penela D, et al.Sinus rhythm detection of conducting channels and ventricular tachycardia isthmus in arrhythmogenic right ventricular cardiomyopathy. Heart Rhythm 2014; 11:747–754. PubMed
Berruezo A, Acosta J, Fernandez-Armenta J, et al.Safety, long-term outcomes and predictors of recurrence after first-line combined endoepicardial ventricular tachycardia substrate ablation in arrhythmogenic cardiomyopathy. Impact of arrhythmic substrate distribution pattern. A prospective multicentre study. Europace 2017;19:607–616. PubMed
Sen-Chowdhry S, Syrris P, Prasad SK, et al.Left dominant arrhythmogenic cardiomyopathy: an under-recognized clinical entity. J Am Coll Cardiol 2008;52:2175–2187. PubMed
Marcus FI, McKenna WJ, Sherrill D, et al.Diagnosis of arrhythmogenic right ventricular cardiomyopathy/dysplasia: proposed modification of the task force criteria. Circulation 2010;121:1533–1541. PubMed PMC
Corrado D, Basso C, Leoni L, et al.Three-dimensional electroanatomic voltage mapping increases accuracy of diagnosing arrhythmogenic right ventricular cardiomyopathy/dysplasia. Circulation 2005; 111:3042–3050. PubMed
Santangeli P, Hamilton-Craig C, Dello Russo A, et al.Imaging of scar in patients with ventricular arrhythmias of right ventricular origin: cardiac magnetic resonance versus electroanatomic mapping. J Cardiovasc Electrophysiol 2011;22:1359–1366. PubMed
Marchlinski FE, Zado E, Dixit S, et al.Electroanatomic substrate and outcome of catheter ablative therapy for ventricular tachycardia in setting of right ventricular cardiomyopathy. Circulation 2004;110:2293–2298. PubMed
Philips B, te Riele AS, Sawant A, et al.Outcomes and ventricular tachycardia recurrence characteristics after epicardial ablation of ventricular tachycardia in arrhythmogenic right ventricular dysplasia/cardiomyopathy. Heart Rhythm 2015;12:716–725. PubMed
Al-Khatib SM, Stevenson WG, Ackerman MJ, et al.2017 AHA/ACC/HRS Guideline for management of patients with ventricular arrhythmias and the prevention of sudden cardiac death: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society. Heart Rhythm 2018;15:e73–e189. PubMed
Wichter T, Borggrefe M, Haverkamp W, Chen X, Breithardt G. Efficacy of antiarrhythmic drugs in patients with arrhythmogenic right ventricular disease. Results in patients with inducible and noninducible ventricular tachycardia. Circulation 1992;86:29–37. PubMed
Marcus GM, Glidden DV, Polonsky B, et al.; Multidisciplinary Study of Right Ventricular Dysplasia Investigators. Efficacy of antiarrhythmic drugs in arrhythmogenic right ventricular cardiomyopathy: a report from the North American ARVC Registry. J Am Coll Cardiol 2009; 54:609–615. PubMed PMC
Ermakov S, Gerstenfeld EP, Svetlichnaya Y, Scheinman MM. Use of flecainide in combination antiarrhythmic therapy in patients with arrhythmogenic right ventricular cardiomyopathy. Heart Rhythm 2017; 14:564–569. PubMed
Dalal D, Jain R, Tandri H, et al.Long-term efficacy of catheter ablation of ventricular tachycardia in patients with arrhythmogenic right ventricular dysplasia/cardiomyopathy. J Am Coll Cardiol 2007;50:432–440. PubMed
Verma A, Kilicaslan F, Schweikert RA, et al.Short- and long-term success of substrate-based mapping and ablation of ventricular tachycardia in arrhythmogenic right ventricular dysplasia. Circulation 2005; 111:3209–3216. PubMed
Philips B, Madhavan S, James C, et al.Outcomes of catheter ablation of ventricular tachycardia in arrhythmogenic right ventricular dysplasia/cardiomyopathy. Circ Arrhythm Electrophysiol 2012;5:499–505. PubMed
Garcia FC, Bazan V, Zado ES, Ren JF, Marchlinski FE. Epicardial substrate and outcome with epicardial ablation of ventricular tachycardia in arrhythmogenic right ventricular cardiomyopathy/dysplasia. Circulation 2009;120:366–375. PubMed
Berruezo A, Fernandez-Armenta Mont L, et al.Combined endocardial and epicardial catheter ablation in arrhythmogenic right ventricular dysplasia incorporating scar dechanneling technique. Circ Arrhythm Electrophysiol 2012;5:111–121. PubMed
Bai R, Di Biase L, Shivkumar K, et al.Ablation of ventricular arrhythmias in arrhythmogenic right ventricular dysplasia/cardiomyopathy arrhythmia-free survival after endo-epicardial substrate based mapping and ablation. Circ Arrhythm Electrophysiol 2011;4:478–485. PubMed
Santangeli P, Zado ES, Supple GE, et al.Long-term outcome with catheter ablation of ventricular tachycardia in patients with arrhythmogenic right ventricular cardiomyopathy. Circ Arrhythm Electrophysiol 2015; 8:1413–1421. PubMed
Polin GM, Haqqani H, Tzou W, et al.Endocardial unipolar voltage mapping to identify epicardial substrate in arrhythmogenic right ventricular cardiomyopathy/dysplasia. Heart Rhythm 2011;8:76–83. PubMed
Fernandez-Armenta J, Penela D, Acosta J, et al.Substrate modification or ventricular tachycardia induction, mapping, and ablation as the first step? A randomized study. Heart Rhythm 2016;13:1589–1595. PubMed
Philips B, Madhavan S, James C, et al.High prevalence of catecholamine-facilitated focal ventricular tachycardia in patients with arrhythmogenic right ventricular dysplasia/cardiomyopathy. Circ Arrhythm Electrophysiol 2013;6:160–166. PubMed
Sacher F, Roberts-Thomson K, Maury P, et al.Epicardial ventricular tachycardia ablation a multicenter safety study. J Am Coll Cardiol 2010;55:2366–2372. PubMed
Della Bella P, Brugada J, Zeppenfeld K, et al.Epicardial ablation for ventricular tachycardia: a European multicenter study. Circ Arrhythm Electrophysiol 2011;4:653–659. PubMed
Roberts-Thomson KC, Steven D, Seiler J, et al.Coronary artery injury due to catheter ablation in adults: presentations and outcomes. Circulation 2009;120:1465–1473. PubMed
Gonska BD, Cao K, Raab J, Eigster G, Kreuzer H. Radiofrequency catheter ablation of right ventricular tachycardia late after repair of congenital heart defects. Circulation 1996;94:1902–1908. PubMed
Zeppenfeld K, Schalij MJ, Bartelings MM, et al.Catheter ablation of ventricular tachycardia after repair of congenital heart disease: electroanatomic identification of the critical right ventricular isthmus. Circulation 2007;116:2241–2252. PubMed
Kriebel T, Saul JP, Schneider H, Sigler M, Paul T. Noncontact mapping and radiofrequency catheter ablation of fast and hemodynamically unstable ventricular tachycardia after surgical repair of tetralogy of Fallot. J Am Coll Cardiol 2007;50:2162–2168. PubMed
Kapel GF, Reichlin T, Wijnmaalen AP, et al.Re-entry using anatomically determined isthmuses: a curable ventricular tachycardia in repaired congenital heart disease. Circ Arrhythm Electrophysiol 2015; 8:102–109. PubMed
Morwood JG, Triedman JK, Berul CI, et al.Radiofrequency catheter ablation of ventricular tachycardia in children and young adults with congenital heart disease. Heart Rhythm 2004;1:301–308. PubMed
van Zyl M, Kapa S, Padmanabhan D, et al.Mechanism and outcomes of catheter ablation for ventricular tachycardia in adults with repaired congenital heart disease. Heart Rhythm 2016;13:1449–1454. PubMed
Laredo M, Fr ank R, Waintraub X, et al.Ten-year outcomes of monomorphic ventricular tachycardia catheter ablation in repaired tetralogy of Fallot. Arch Cardiovasc Dis 2017;110:292–302. PubMed
Miyazaki A, Sakaguchi H, Ohuchi H, et al.Efficacy of Hemodynamicbased management of tachyarrhythmia after repair of tetralogy of Fallot. Circ J 2012;76:2855–2862. PubMed
Karamlou T, Silber I, Lao R, et al.Outcomes after late reoperation in patients with repaired tetralogy of Fallot: the impact of arrhythmia and arrhythmia surgery. Ann Thorac Surg 2006;81:1786–1793. PubMed
Harrild DM, Berul CI, Cecchin F, et al.Pulmonary valve replacement in tetralogy of Fallot: impact on survival and ventricular tachycardia. Circulation 2009;119:445–451. PubMed PMC
Downar E, Harris L, Kimber S, et al.Ventricular tachycardia after surgical repair of tetralogy of Fallot: results of intraoperative mapping studies. J Am Coll Cardiol 1992;20:648–655. PubMed
Therrien J, Siu SC, Harris L, et al.Impact of pulmonary valve replacement on arrhythmia propensity late after repair of tetralogy of Fallot. Circulation 2001;103:2489–2494. PubMed
Sabate Rotes A, Connolly HM, Warnes CA, et al.Ventricular arrhythmia risk stratification in patients with tetralogy of Fallot at the time of pulmonary valve replacement. Circ Arrhythm Electrophysiol 2015; 8:110–116. PubMed
Sandhu A, Ruckdeschel E, Sauer WH, et al.Perioperative electrophysiology study in patients with tetralogy of Fallot undergoing pulmonary valve replacement will identify those at high risk of subsequent ventricular tachycardia. Heart Rhythm 2018;15:679–685. PubMed
Moore JP, Shannon KM, Gallotti RG, et al.Catheter ablation of ventricular arrhythmia for Ebstein’s anomaly in unoperated and post-surgical patients. JACC Clin Electrophysiol 2018;4:1300–1307. PubMed
Kapel GFL, Laranjo S, Blom NA, et al.Impact of surgery on presence and dimensions of anatomical isthmuses in tetralogy of Fallot. Heart 2018;104:1200–1207. PubMed
Kapel GF, Sacher F, Dekkers OM, et al.Arrhythmogenic anatomical isthmuses identified by electroanatomical mapping are the substrate for ventricular tachycardia in repaired tetralogy of Fallot. Eur Heart J 2017; 38:268–276. PubMed
Kapel GF, Reichlin T, Wijnmaalen AP, et al.Left-sided ablation of ventricular tachycardia in adults with repaired tetralogy of Fallot: a case series. Circ Arrhythm Electrophysiol 2014;7:889–897. PubMed
Okura Y, Dec GW, Hare JM, et al.A clinical and histopathologic comparison of cardiac sarcoidosis and idiopathic giant cell myocarditis. J Am Coll Cardiol 2003;41:322–329. PubMed
Litovsky SH, Burke AP, Virmani R. Giant cell myocarditis: an entity distinct from sarcoidosis characterized by multiphasic myocyte destruction by cytotoxic T cells and histiocytic giant cells. Mod Pathol 1996; 9:1126–1134. PubMed
Trachtenberg BH, Hare JM. Inflammatory cardiomyopathic syndromes. Circ Res 2017;121:803–818. PubMed
Birnie DH, Sauer WH, Bogun F, et al.HRS expert consensus statement on the diagnosis and management of arrhythmias associated with cardiac sarcoidosis. Heart Rhythm 2014;11:1305–1323. PubMed
Kandolin R, Lehtonen J, Airaksinen J, et al.Cardiac sarcoidosis: epidemiology, characteristics, and outcome over 25 years in a nationwide study. Circulation 2015;131:624–632. PubMed
Chapelon-Abric C, Sene D, Saadoun D, et al.Cardiac sarcoidosis: diagnosis, therapeutic management and prognostic factors. Arch Cardiovasc Dis 2017;110:456–465. PubMed
Yazaki Y, Isobe M, Hiroe M, et al.Central Japan Heart Study Group. Prognostic determinants of long-term survival in Japanese patients with cardiac sarcoidosis treated with prednisone. Am J Cardiol 2001;88:1006–1010. PubMed
Pennell DJ. Cardiovascular magnetic resonance. Circulation 2010; 121:692–705. PubMed
Yancy CW, Jessup M, Bozkurt B, et al.2013 ACCF/AHA guideline for the management of heart failure: a report of the American College Of Cardiology Foundation/American Heart Association Task Force On Practice Guidelines. J Am Coll Cardiol 2013;62:e147–e239. PubMed
Vasaiwala SC, Finn C, Delpriore J, et al.Prospective study of cardiac sarcoid mimicking arrhythmogenic right ventricular dysplasia. J Cardiovasc Electrophysiol 2009;20:473–476. PubMed
Philips B, Madhavan S, James CA, et al.Arrhythmogenic right ventricular dysplasia/cardiomyopathy and cardiac sarcoidosis: distinguishing features when the diagnosis is unclear. Circ Arrhythm Electrophysiol 2014; 7:230–236. PubMed
Dechering DG, Kochhaüser S, Wasmer K, et al.Electrophysiological characteristics of ventricular tachyarrhythmias in cardiac sarcoidosis versus arrhythmogenic right ventricular cardiomyopathy. Heart Rhythm 2013; 10:158–164. PubMed
Steckman DA, Schneider PM, Schuller JL, et al.Utility of cardiac magnetic resonance imaging to differentiate cardiac sarcoidosis from arrhythmogenic right ventricular cardiomyopathy. Am J Cardiol 2012; 110:575–579. PubMed
Schuller JL, Lowery CM, Zipse M, et al.Diagnostic utility of signal-averaged electrocardiography for detection of cardiac sarcoidosis. Ann Noninvasive Electrocardiol 2011;16:70–76. PubMed PMC
Jefic D, Joel B, Good E, et al.Role of radiofrequency catheter ablation of ventricular tachycardia in cardiac sarcoidosis: report from a multicenter registry. Heart Rhythm 2009;6:189–195. PubMed
Roberts WC, McAllister HA Jr, Ferrans VJ. Sarcoidosis of the heart. A clinicopathologic study of 35 necropsy patients (group 1) and review of 78 previously described necropsy patients (group 11). Am J Med 1977; 63:86–108. PubMed
Casella M, Pizzamiglio F, Dello Russo A, et al.Feasibility of combined unipolar and bipolar voltage maps to improve sensitivity of endomyocardial biopsy. Circ Arrhythm Electrophysiol 2015;8:625–632. PubMed
Berte B, Eyskens B, Meyfroidt G, Willems R. Bidirectional ventricular tachycardia in fulminant myocarditis. Europace 2008;10:767–768. PubMed
Park H, Park H, Lee D, et al.Increased phosphorylation of Ca(21) handling proteins as a proarrhythmic mechanism in myocarditis. Circ J 2014;78:2292–2301. PubMed
Zeppenfeld K, Blom NA, Bootsma M, Schalij MJ. Incessant ventricular tachycardia in fulminant lymphocytic myocarditis: evidence for origin in the Purkinje system and successful treatment with ablation. Heart Rhythm 2007;4:88–91. PubMed
Tai YT, Lau CP, Fong PC, Li JP, Lee KL. Incessant automatic ventricular tachycardia complicating acute coxsackie b myocarditis. Cardiology 1992; 80:339–344. PubMed
Yodogawa K, Seino Y, Ohara T, Takayama H, Katoh T, Mizuno K. Effect of corticosteroid therapy on ventricular arrhythmias in patients with cardiac sarcoidosis. Ann Noninvasive Electrocardiol 2011;16:140–147. PubMed PMC
Stees CS, Khoo MSC, Lowery CM, Sauer WH. Ventricular tachycardia storm successfully treated with immunosuppression and catheter ablation in a patient with cardiac sarcoidosis. J Cardiovasc Electrophysiol 2011; 22:210–213. PubMed
Naruse Y, Sekiguchi Y, Nogami A, et al.Systematic treatment approach to ventricular tachycardia in cardiac sarcoidosis. Circ Arrhythm Electrophysiol 2014;7:407–413. PubMed
Muser D, Santangeli P, Pathak RK, et al.Long-term outcomes of catheter ablation of ventricular tachycardia in patients with cardiac sarcoidosis. Circ Arrhythm Electrophysiol 2016;9:e004333. PubMed
Koplan BA, Soejima K, Baughman KL, Epstein LM, Stevenson WG. Refractory ventricular tachycardia secondary to cardiac sarcoid: electrophysiologic characteristics, mapping, and ablation. Heart Rhythm 2006; 3:924–929. PubMed
Kumar S, Barbhaiya C, Nagashima K, et al.Ventricular tachycardia in cardiac sarcoidosis: characterization of ventricular substrate and outcomes of catheter ablation. Circ Arrhythm Electrophysiol 2015;8:87–93. PubMed
Tzou WS, Rothstein PA, Cowherd M, et al.Repeat ablation of refractory ventricular arrhythmias in patients with nonischemic cardiomyopathy: impact of midmyocardial substrate and role of adjunctive ablation techniques. J Cardiovasc Electrophysiol 2018;29:1403–1412. PubMed
Sapp JL, Beeckler C, Pike R, et al.Initial human feasibility of infusion needle catheter ablation for refractory ventricular tachycardia. Circulation 2013;128:2289–2295. PubMed
Nguyen DT, Tzou WS, Brunnquell M, et al.Clinical and biophysical evaluation of variable bipolar configurations during radiofrequency ablation for treatment of ventricular arrhythmias. Heart Rhythm 2016; 13:2161–2171. PubMed
Kreidieh B, Rodriguez-Manero M, Schurmann PA, Ibarra-Cortez SH, Dave AS, Valderrabano M. Retrograde coronary venous ethanol infusion for ablation of refractory ventricular tachycardia. Circ Arrhythm Electrophysiol 2016;9:e004352. PubMed PMC
Papageorgiou N, Providencia R, Bronis K, et al.Catheter ablation for ventricular tachycardia in patients with cardiac sarcoidosis: a systematic review. Europace 2017;20:682–691. PubMed
Bocchi EA, Bestetti RB, Scanavacca MI, Cunha Neto E, Issa VS. Chronic Chagas heart disease management: from etiology to cardiomyopathy treatment. J Am Coll Cardiol 2017;70:1510–1524. PubMed
Healy C, Viles-Gonzalez JF, Saenz LC, Soto M, Ramírez JD, d’Avila A. Arrhythmias in Chagasic cardiomyopathy. Card Electrophysiol Clin 2015; 7:251–268. PubMed
Sosa E, Scanavacca M, d’Avila A, et al.Endocardial and epicardial ablation guided by nonsurgical transthoracic epicardial mapping to treat recurrent ventricular tachycardia. J Cardiovasc Electrophysiol 1998;9:229–239. PubMed
Scanavacca M Sosa E Epicardial ablation of ventricular tachycardia in Chagas heart disease. Card Electrophysiol Clin 2010;2:55–67. PubMed
Scanavacca M, Sosa E, d’Avila A, De Lourdes Higuchi M. Radiofrequency ablation of sustained ventricular tachycardia related to the mitral isthmus in Chagas’ disease. Pacing Clin Electrophysiol 2002;25:368–371. PubMed
Sarabanda AV, Gali WL, Gomes GG. Bundle branch reentry: a novel mechanism for sustained ventricular tachycardia in Chagas heart disease. HeartRhythm Case Rep 2018;4:293–297. PubMed PMC
Saenz LC, Corrales FM, Bautista W, et al.Cardiac sympathetic denervation for intractable ventricular arrhythmias in Chagas disease. Heart Rhythm 2016;13:1388–1394. PubMed
Soto-Becerra R, Bazan V, Bautista W, et al.Ventricular tachycardia in the setting of Chagasic cardiomyopathy: use of voltage mapping to characterize endoepicardial nonischemic scar distribution. Circ Arrhythm Electrophysiol 2017;10:e004950. PubMed
Hasselberg NE, Haland TF, Saberniak J, et al.Lamin A/C cardiomyopathy: young onset, high penetrance, and frequent need for heart transplantation. Eur Heart J 2018;39:853–860. PubMed PMC
van Berlo JH, de Voogt WG, van der Kooi AJ, et al.Meta-analysis of clinical characteristics of 299 carriers of LMNA gene mutations: do lamin A/C mutations portend a high risk of sudden death? J Mol Med (Berl) 2005;83:79–83. PubMed
van Berlo JH, Duboc D, Pinto YM. Often seen but rarely recognised: cardiac complications of lamin A/C mutations. Eur Heart J 2004; 25:812–814. PubMed
Kumar S, Baldinger SH, Gandjbakhch E, et al.Long-term arrhythmic and nonarrhythmic outcomes of Lamin A/C mutation carriers. J Am Coll Cardiol 2016;68:2299–2307. PubMed
Hasselberg NE, Edvardsen T, Petri H, et al.Risk prediction of ventricular arrhythmias and myocardial function in Lamin A/C mutation positive subjects. Europace 2014;16:563–571. PubMed
van Rijsingen IA, Arbustini E, Elliott PM, et al.Risk factors for malignant ventricular arrhythmias in Lamin A/C mutation carriers a European cohort study. J Am Coll Cardiol 2012;59:493–500. PubMed
Kumar S, Androulakis AF, Sellal JM, et al.Multicenter experience with catheter ablation for ventricular tachycardia in Lamin A/C cardiomyopathy. Circ Arrhythm Electrophysiol 2016;9:e004357. PubMed
Jenni R, Oechslin E, Schneider J, Attenhofer Jost C, Kaufmann PA. Echocardiographic and pathoanatomical characteristics of isolated left ventricular non-compaction: a step towards classification as a distinct cardiomyopathy. Heart 2001;86:666–671. PubMed PMC
Murphy RT, Thaman R, Blanes JG, et al.Natural history and familial characteristics of isolated left ventricular non-compaction. Eur Heart J 2005;26:187–192. PubMed
Muser D, Nucifora G, Gianfagna E, et al.Clinical spectrum of isolated left ventricular noncompaction: thromboembolic events, malignant left ventricular arrhythmias, and refractory heart failure. J Am Coll Cardiol 2014;63:e39. PubMed
Muser D, Liang JJ, Witschey WR, et al.Ventricular arrhythmias associated with left ventricular noncompaction: electrophysiologic characteristics, mapping, and ablation. Heart Rhythm 2017;14:166–175. PubMed
Li Y, Xue Y, Yu J, et al.Electrophysiological characteristics and radiofrequency ablation of sustained monomorphic ventricular tachycardia in adult patients with isolated ventricular noncompaction. J Interv Card Electrophysiol 2018;52:117–125. PubMed
Jackson N, King B, Viswanathan K, Downar E, Spears D. Case report: ablation of diffuse inter-trabecular substrate in a patient with isolated ventricular non-compaction. Indian Pacing Electrophysiol J 2015; 15:162–164. PubMed PMC
Paparella G, Capulzini L, de Asmundis C, et al.Electro-anatomical mapping in a patient with isolated left ventricular non-compaction and left ventricular tachycardia. Europace 2009;11:1227–1229. PubMed
Ritter M, Oechslin E, Sutsch G, Attenhofer C, Schneider J, Jenni R. Isolated noncompaction of the myocardium in adults. Mayo Clin Proc 1997; 72:26–31. PubMed
Santoro F, Manuppelli V, Brunetti ND. Multiple morphology ventricular tachycardia in non-compaction cardiomyopathy: multi-modal imaging. Europace 2013;15:304. PubMed
Ohlow MA. Congenital left ventricular aneurysms and diverticula: definition, pathophysiology, clinical relevance and treatment. Cardiology 2006;106:63–72. PubMed
Ohlow MA. Congenital left ventricular aneurysms and diverticula: an entity in search of an identity. J Geriatr Cardiol 2017;14:750–762. PubMed PMC
Ohlow MA, Secknus MA, Geller JC, von Korn H, Lauer B. Prevalence and outcome of congenital left ventricular aneurysms and diverticula in an adult population. Cardiology 2009;112:287–293. PubMed
Haegeli LM, Ercin E, Steffel J, et al.Incidence and prognosis of ventricular arrhythmias in patients with congenital left ventricular aneurysms or diverticula. Am J Med 2015;128:653.e1–653.e6. PubMed
Haegeli LM, Ercin E, Wolber T, et al.Arrhythmic manifestations in patients with congenital left ventricular aneurysms and diverticula. Am J Cardiol 2011;108:1826–1830. PubMed
Ouyang F, Antz M, Deger FT, et al.An underrecognized subepicardial reentrant ventricular tachycardia attributable to left ventricular aneurysm in patients with normal coronary arteriograms. Circulation 2003; 107:2702–2709. PubMed
Ramdjan TT, Yaksh A, Roos-Hesselink JW, de Groot NM. Endovascular catheter ablation of ventricular tachycardia in a patient with a surgically repaired congenital left ventricular aneurysm. Neth Heart J 2015; 23:370–372. PubMed PMC
Santamaria M, Cireddu M, Riva S, Trevisi N, Della Bella P. Radiofrequency catheter ablation guided by noncontact mapping of ventricular tachycardia originating from an idiopathic left ventricular aneurysm. J Interv Card Electrophysiol 2007;19:49–53. PubMed
Pedrotty DM, Rame JE, Margulies KB. Management of ventricular arrhythmias in patients with ventricular assist devices. Curr Opin Cardiol 2013;28:360–368. PubMed
Yoruk A, Sherazi S, Massey HT, et al.Predictors and clinical relevance of ventricular tachyarrhythmias in ambulatory patients with a continuous flow left ventricular assist device. Heart Rhythm 2016;13:1052–1056. PubMed
Enriquez AD, Calenda B, Miller MA, Anyanwu AC, Pinney SP. The role of implantable cardioverter-defibrillators in patients with continuous flow left ventricular assist devices. Circ Arrhythm Electrophysiol 2013; 6:668–674. PubMed
Ambardekar AV, Allen LA, Lindenfeld J, et al.Implantable cardioverter-defibrillator shocks in patients with a left ventricular assist device. J Heart Lung Transplant 2010;29:771–776. PubMed
Bedi M, Kormos R, Winowich S, McNamara DM, Mathier MA, Murali S. Ventricular arrhythmias during left ventricular assist device support. Am J Cardiol 2007;99:1151–1153. PubMed
Garan AR, Levin AP, Topkara V, et al.Early post-operative ventricular arrhythmias in patients with continuous-flow left ventricular assist devices. J Heart Lung Transplant 2015;34:1611–1616. PubMed
Birati EY, Quiaoit Y, Wald J, et al.Ventricular assist device thrombosis: a wide spectrum of clinical presentation. J Heart Lung Transplant 2015; 34:613–615. PubMed
Raasch H, Jensen BC, Chang PP, et al.Epidemiology, management, and outcomes of sustained ventricular arrhythmias after continuous-flow left ventricular assist device implantation. Am Heart J 2012;164:373–378. PubMed
Sacher F, Reichlin T, Zado ES, et al.Characteristics of ventricular tachycardia ablation in patients with continuous flow left ventricular assist devices. Circ Arrhythm Electrophysiol 2015;8:592–597. PubMed
Dandamudi G, Ghumman WS, Das MK, Miller JM. Endocardial catheter ablation of ventricular tachycardia in patients with ventricular assist devices. Heart Rhythm 2007;4:1165–1169. PubMed
Moss JD, Flatley EE, Beaser AD, et al.Characterization of Ventricular tachycardia after left ventricular assist device implantation as destination therapy: a single-center ablation experience. JACC Clin Electrophysiol 2017;3:1412–1424. PubMed
Cantillon DJ, Bianco C, Wazni OM, et al.Electrophysiologic characteristics and catheter ablation of ventricular tachyarrhythmias among patients with heart failure on ventricular assist device support. Heart Rhythm 2012;9:859–864. PubMed
Garan AR, Iyer V, Whang W, et al.Catheter ablation for ventricular tachyarrhythmias in patients supported by continuous-flow left ventricular assist devices. ASAIO J 2014;60:311–316. PubMed
Herweg B, Ilercil A, Kristof-Kuteyeva O, et al.Clinical observations and outcome of ventricular tachycardia ablation in patients with left ventricular assist devices. Pacing Clin Electrophysiol 2012; 35:1377–1383. PubMed
Snipelisky D, Reddy YN, Manocha K, et al.Effect of ventricular arrhythmia ablation in patients with heart mate ii left ventricular assist devices: an evaluation of ablation therapy. J Cardiovasc Electrophysiol 2017;28:68–77. PubMed
Tokuda M, Kojodjojo P, Tung S, et al.Acute failure of catheter ablation for ventricular tachycardia due to structural heart disease: causes and significance. J Am Heart Assoc 2013;2:e000072. PubMed PMC
Roberts-Thomson KC, Seiler J, Steven D, et al.Percutaneous access of the epicardial space for mapping ventricular and supraventricular arrhythmias in patients with and without prior cardiac surgery. J Cardiovasc Electrophysiol 2010;21:406–411. PubMed
Kumar S, Barbhaiya CR, Sobieszczyk P, et al.Role of alternative interventional procedures when endo- and epicardial catheter ablation attempts for ventricular arrhythmias fail. Circ Arrhythm Electrophysiol 2015; 8:606–615. PubMed
Soejima K, Couper G, Cooper JM, Sapp JL, Epstein LM, Stevenson WG. Subxiphoid surgical approach for epicardial catheter-based mapping and ablation in patients with prior cardiac surgery or difficult pericardial access. Circulation 2004;110:1197–1201. PubMed
Anter E, Hutchinson MD, Deo R, et al.Surgical ablation of refractory ventricular tachycardia in patients with nonischemic cardiomyopathy. Circ Arrhythm Electrophysiol 2011;4:494–500. PubMed
Sarkozy A, Tokuda M, Tedrow UB, et al.Epicardial ablation of ventricular tachycardia in ischemic heart disease. Circ Arrhythm Electrophysiol 2013; 6:1115–1122. PubMed
Emaminia A, Nagji AS, Ailawadi G, Bergin JD, Kern JA. Concomitant left ventricular assist device placement and cryoablation for treatment of ventricular tachyarrhythmias associated with heart failure. Ann Thorac Surg 2011;92:334–336. PubMed
Mulloy DP, Bhamidipati CM, Stone ML, et al.Cryoablation during left ventricular assist device implantation reduces postoperative ventricular tachyarrhythmias. J Thorac Cardiovasc Surg 2013;145:1207–1213. PubMed PMC
McIlvennan CK, Babu AN, Brieke A, Ambardekar AV. Concomitant surgical cryoablation for refractory ventricular tachycardia and left ventricular assist device placement: a dual remedy but a recipe for thrombosis? J Cardiothorac Surg 2016;11:53. PubMed PMC
Choi EK, Nagashima K, Lin KY, et al.Surgical cryoablation for ventricular tachyarrhythmia arising from the left ventricular outflow tract region. Heart Rhythm 2015;12:1128–1136. PubMed
Mulpuru SK, Feld GK, Madani M, Sawhney NS. A novel minimally-invasive surgical approach for ablation of ventricular tachycardia originating near the proximal left anterior descending artery. Circ Arrhythm Electrophysiol 2012;5:e95–e97. PubMed
Aziz Z, Moss JD, Jabbarzadeh M, Hellstrom J, Balkhy H, Tung R. Totally endoscopic robotic epicardial ablation of refractory left ventricular summit arrhythmia: first-in-man. Heart Rhythm 2017;14:135–138. PubMed
Krul SPJ, Berger WR, Veldkamp MW, et al.Treatment of atrial and ventricular arrhythmias through autonomic modulation. JACC Clin Electrophysiol 2015;1:496–508. PubMed
Matsunari I, Aoki H, Nomura Y, et al.Iodine-123 metaiodobenzylguanidine imaging and carbon-11 hydroxyephedrine positron emission tomography compared in patients with left ventricular dysfunction. Circ Cardiovasc Imaging 2010;3:595–603. PubMed
Krittayaphong R, Bhuripanyo K, Punlee K, Kangkagate C, Chaithiraphan S. Effect of atenolol on symptomatic ventricular arrhythmia without structural heart disease: a randomized placebo-controlled study. Am Heart J 2002;144:e10. PubMed
Schwartz PJ, Motolese M, Pollavini G, et al.; Italian Sudden Death Prevention Group. Prevention of sudden cardiac death after a first myocardial infarction by pharmacologic or surgical antiadrenergic interventions. J Cardiovasc Electrophysiol 1992;3:2–16.
Nademanee K, Taylor R, Bailey WE, Rieders DE, Kosar EM. Treating electrical storm: sympathetic blockade versus advanced cardiac life support-guided therapy. Circulation 2000;102:742–747. PubMed
Tanaka H, Kinoshita O, Uchikawa S, et al.Successful prevention of recurrent ventricular fibrillation by intravenous isoproterenol in a patient with Brugada syndrome. Pacing Clin Electrophysiol 2001;24:1293–1294. PubMed
Aizawa Y, Chinushi M, Hasegawa K, et al.Electrical storm in idiopathic ventricular fibrillation is associated with early repolarization. J Am Coll Cardiol 2013;62:1015–1019. PubMed
Bourke T, Vaseghi M, Michowitz Y, et al.Neuraxial modulation for refractory ventricular arrhythmias:value of thoracic epidural anesthesia and surgicalleft cardiac sympathetic denervation. Circulation 2010;121:2255–2262. PubMed PMC
Fudim M, Boortz-Marx R, Ganesh A, et al.Stellate ganglion blockade for the treatment of refractory ventricular arrhythmias: a systematic review and meta-analysis. J Cardiovasc Electrophysiol 2017;28:1460–1467. PubMed
Vaseghi M, Gima J, Kanaan C, et al.Cardiac sympathetic denervation in patients with refractory ventricular arrhythmias or electrical storm: intermediate and long-term follow-up. Heart Rhythm 2014;11:360–366. PubMed PMC
Surman TL, Stuklis RG, Chan JC. Thoracoscopic sympathectomy for long QT syndrome: literature review and case study. Heart Lung Circ 2019; 28:486–494. PubMed
Olde Nordkamp LR, Driessen AH, Odero A, et al.Left cardiac sympathetic denervation in the Netherlands for the treatment of inherited arrhythmia syndromes. Neth Heart J 2014;22:160–166. PubMed PMC
Vaseghi M, Barwad P, Malavassi Corrales FJ, et al.Cardiac sympathetic denervation for refractory ventricular arrhythmias. J Am Coll Cardiol 2017;69:3070–3080. PubMed PMC
Ajijola OA, Lellouche N, Bourke T, et al.Bilateral cardiac sympathetic denervation for the management of electrical storm. J Am Coll Cardiol 2012;59:91–92. PubMed PMC
Saenz LC, Corrales FM, Bautista W, et al.Cardiac sympathetic denervation for intractable ventricular arrhythmias in Chagas disease. Heart Rhythm 2016;13:1388–1394. PubMed
Moss AJ, McDonald J. Unilateral cervicothoracic sympathetic ganglionectomy for the treatment of long QT interval syndrome. N Engl J Med 1971; 285:903–904. PubMed
Grimaldi R, de Luca A, Kornet L, Castagno D, Gaita F. Can spinal cord stimulation reduce ventricular arrhythmias? Heart Rhythm 2012;9:1884–1887. PubMed
Schwartz PJ, Priori SG, Cerrone M, et al.Left cardiac sympathetic denervation in the management of high-risk patients affected by the long-QT syndrome. Circulation 2004;109:1826–1833. PubMed
Bos JM, Bos KM, Johnson JN, Moir C, Ackerman MJ. Left cardiac sympathetic denervation in long QT syndrome: analysis of therapeutic nonresponders. Circ Arrhythm Electrophysiol 2013;6:705–711. PubMed
Hofferberth SC, Cecchin F, Loberman D, Fynn-Thompson F. Left thoracoscopic sympathectomy for cardiac denervation in patients with life-threatening ventricular arrhythmias. J Thorac Cardiovasc Surg 2014;147:404–409. PubMed
Li J, Liu Y, Yang F, et al.Video-assisted thoracoscopic left cardiac sympathetic denervation: a reliable minimally invasive approach for congenital long-QT syndrome. Ann Thorac Surg 2008;86:1955–1958. PubMed
De Ferrari GM, Dusi V, Spazzolini C, et al.Clinical management of catecholaminergic polymorphic ventricular tachycardia: the role of left cardiac sympathetic denervation. Circulation 2015;131:2185–2193. PubMed
Wilde AA, Bhuiyan ZA, Crotti L, et al.Left cardiac sympathetic denervation for catecholaminergic polymorphic ventricular tachycardia. N Engl J Med 2008;358:2024–2029. PubMed
Krum H, Schlaich M, Whitbourn R, et al.Catheter-based renal sympathetic denervation for resistant hypertension: a multicentre safety and proof-ofprinciple cohort study. Lancet 2009;373:1275–1281. PubMed
Ukena C, Bauer A, Mahfoud F, et al.Renal sympathetic denervation for treatment of electrical storm: first-in-man experience. Clin Res Cardiol 2012;101:63–67. PubMed
Hoffmann BA, Steven D, Willems S, Sydow K. Renal sympathetic denervation as an adjunct to catheter ablation for the treatment of ventricular electrical storm in the setting of acute myocardial infarction. J Cardiovasc Electrophysiol 2013;24:1175–1178. PubMed
Remo BF, Preminger M, Bradfield J, et al.Safety and efficacy of renal denervation as a novel treatment of ventricular tachycardia storm in patients with cardiomyopathy. Heart Rhythm 2014;11:541–546. PubMed PMC
Ukena C, Mahfoud F, Ewen S, et al.Renal denervation for treatment of ventricular arrhythmias: data from an international multicenter registry. Clin Res Cardiol 2016;105:873–879. PubMed
Horowitz LN, Josephson ME, Farshidi A, Spielman SR, Michelson EL, Greenspan AM. Recurrent sustained ventricular tachycardia 3. Role of the electrophysiologic study in selection of antiarrhythmic regimens. Circulation 1978;58:986–997. PubMed
Miller JM, Kienzle MG, Harken AH, Josephson ME. Subendocardial resection for ventricular tachycardia: predictors of surgical success. Circulation 1984;70:624–631. PubMed
Kudenchuk PJ, Kron J, Walance CG, Cutler JE, Griffith KK, McAnulty JH. Day-to-day reproducibility of antiarrhythmic drug trials using programmed extrastimulus techniques for ventricular tachyarrhythmias associated with coronary artery disease. Am J Cardiol 1990; 66:725–730. PubMed
de Riva M, Piers SRD, Kapel GFL, et al.Reassessing noninducibility as ablation endpoint of post-infarction ventricular tachycardia: the impact of left ventricular function. Circ Arrhythm Electrophysiol 2015;8:853–862. PubMed
Ghanbar H, Baser K, Yokokawa M, et al.Noninducibility in postinfarction ventricular tachycardia as an end point for ventricular tachycardia ablation and its effects on outcomes: a meta-analysis. Circ Arrhythm Electrophysiol 2014;7:677–683. PubMed
Essebag V, Joza J, Nery PB, et al.Prognostic value of noninducibility on outcomes of ventricular tachycardia ablation: a VANISH substudy. JACC Clin Electrophysiol 2018;4:911–919. PubMed
Watanabe M, de Riva M, Piers SRD, et al.Fast nonclinical ventricular tachycardia inducible after ablation in patients with structural heart disease: definition and clinical implications. Heart Rhythm 2018; 15:668–676. PubMed
Frankel DS, Mountantonakis SE, Zado ES, et al.Noninvasive programmed ventricular stimulation early after ventricular tachycardia ablation to predict risk of late recurrence. J Am Coll Cardiol 2012; 59:1529–1535. PubMed
Oloriz T, Baratto F, Nicola Trevisi N, et al.Defining the outcome of ventricular tachycardia ablation timing and value of programmed ventricular stimulation. Circ Arrhythm Electrophysiol 2018;11:e005602. PubMed
Yokokawa M, Desjardins B, Crawford T, Good E, Morady F, Bogun F. Reasons for recurrent ventricular tachycardia after catheter ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2013; 61:66–73. PubMed
Santangeli P, Marchlinski FE. Substrate mapping for unstable ventricular tachycardia. Heart Rhythm 2016;13:569–583. PubMed
Santangeli P, Frankel DS, Marchlinski FE. End points for ablation of scar-related ventricular tachycardia. Circ Arrhythm Electrophysiol 2014;7:949–960. PubMed
Soejima K, Stevenson WG, Maisel WH, Sapp JL, Epstein LM. Electrically unexcitable scar mapping based on pacing threshold for identification of the reentry circuit isthmus: feasibility for guiding ventricular tachycardia ablation. Circulation 2002;106:1678–1683. PubMed
Arenal A, Glez-Torrecilla E, Ortiz M, et al.Ablation of electrograms with an isolated, delayed component as treatment of unmappable monomorphic ventricular tachycardias in patients with structural heart disease. J Am Coll Cardiol 2003;41:81–92. PubMed
Di Marco A, Oloriz Sanjuan T, Paglino G, et al.Late potentials abolition reduces ventricular tachycardia recurrence after ablation especially in higher-risk patients with a chronic total occlusion in an infarct-related artery. J Cardiovasc Electrophysiol 2018;29:1119–1124. PubMed
Jaïs P, Maury P, Khairy P, et al.Elimination of local abnormal ventricular activities: a new end point for substrate modification in patients with scar-related ventricular tachycardia. Circulation 2012; 125:2184–2196. PubMed
Berruezo A, Fernandez-Armenta J, Andreu D, et al.Scar dechanneling: new method for scar-related left ventricular tachycardia substrate ablation. Circ Arrhythm Electrophysiol 2015;8:326–336. PubMed
Di Biase L, Burkhardt JD, Lakkireddy D, et al.Ablation of stable VTs versus substrate ablation in ischemic cardiomyopathy: the VISTA Randomized Multicenter Trial. J Am Coll Cardiol 2015; 66:2872–2882. PubMed
Gökoğlan Y, Mohanty S, Gianni C, et al.Scar homogenization versus limited-substrate ablation in patients with nonischemic cardiomyopathy and ventricular tachycardia. J Am Coll Cardiol 2016;68:1990–1998. PubMed
Tilz RR, Makimoto H, Lin T, et al.Electrical isolation of a substrate after myocardial infarction: a novel ablation strategy for unmappable ventricular tachycardias—feasibility and clinical outcome. Europace 2014; 16:1040–1052. PubMed
Tzou WS, Frankel DS, Hegeman T, et al.Core isolation of critical arrhythmia elements for treatment of multiple scar-based ventricular tachycardias. Circ Arrhythm Electrophysiol 2015;8:353–361. PubMed
Ren JF, Callans DJ, Michele JJ, Dillon SM, Marchlinski FE. Intracardiac echocardiographic evaluation of ventricular mural swelling from radiofrequency ablation in chronic myocardial infarction: irrigated-tip versus standard catheter. J Interv Card Electrophysiol 2001;5:27–32. PubMed
Dickfeld T, Kato R, Zviman M, et al.Characterization of acute and subacute radiofrequency ablation lesions with nonenhanced magnetic resonance imaging. Heart Rhythm 2007;4:208–214. PubMed PMC
Singh-Moon RP, Yao X, Iyer V, Marboe C, Whang W, Hendon CP. Real-time optical spectroscopic monitoring of non-irrigated lesion progression within atrial and ventricular tissues. J Biophotonics 2018;11. e201800144. PubMed PMC
Sapp JL, Soejima K, Cooper JM, Epstein LM, Stevenson WG. Ablation lesion size correlates with pacing threshold: a physiological basis for use of pacing to assess ablation lesions. Pacing Clin Electrophysiol 2004; 27:933–937. PubMed
Marchlinski FE, Callans DJ, Gottlieb CD, Zado E. Linear ablation lesions for control of unmappable ventricular tachycardia in patients with ischemic and nonischemic cardiomyopathy. Circulation 2000; 101:1288–1296. PubMed
Bogun F, Good E, Reich S, et al.Isolated potentials during sinus rhythm and pace-mapping within scars as guides for ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2006;47:2013–2019. PubMed
Jackson N, McGee M, Ahmed W, et al.Groin haemostasis with a purse string suture for patients following catheter ablation procedures (GITAR study). Heart Lung Circ 2018March20; 10.1016/j.hlc.2018.03.011 [Epub ahead of print]. PubMed DOI
Pracon R, Bangalore S, Henzel J, et al.A randomized comparison of modified subcutaneous “Z”-stitch versus manual compression to achieve hemostasis after large caliber femoral venous sheath removal. Catheter Cardiovasc Interv 2018;91:105–112. PubMed
Ben-Dor I, Craig P, Torguson R, et al.MynxGrip vascular closure device versus manual compression for hemostasis of percutaneous transfemoral venous access closure: results from a prospective multicenter randomized study. Cardiovasc Revasc Med 2018;19:418–422. PubMed
Aytemir K, Canpolat U, Yorgun H, et al.Usefulness of ‘figure-of-eight’ suture to achieve haemostasis after removal of 15-French calibre femoral venous sheath in patients undergoing cryoablation. Europace 2016; 18:1545–1550. PubMed
Lakshmanadoss U, Wong WS, Kutinsky I, Khalid MR, Williamson B, Haines DE. Figure-of-eight suture for venous hemostasis in fully anticoagulated patients after atrial fibrillation catheter ablation. Indian Pacing Electrophysiol J 2017;17:134–139. PubMed PMC
Cilingiroglu M, Salinger M, Zhao D, Feldman T. Technique of temporary subcutaneous “figure-of-eight” sutures to achieve hemostasis after removal of large-caliber femoral venous sheaths. Catheter Cardiovasc Interv 2011;78:155–160. PubMed
Okada M, Inoue K, Tanaka K, et al.Efficacy and safety of figure-of-eight suture for hemostasis after radiofrequency catheter ablation for atrial fibrillation. Circ J 2018;82:956–964. PubMed
Akkaya E, Berkowitsch A, Zaltsberg S, et al.Safety and feasibility of percutaneous skin closure using purse-string suture compared with compression bandage after pulmonary vein isolation. J Cardiovasc Electrophysiol 2017;28:1048–1057. PubMed
Shaw JA, Dewire E, Nugent A, Eisenhauer AC. Use of suture-mediated vascular closure devices for the management of femoral vein access after transcatheter procedures. Catheter Cardiovasc Interv 2004;63:439–443. PubMed
Coto HA. Closure of the femoral vein puncture site after transcatheter procedures using Angio-Seal. Catheter Cardiovasc Interv 2002; 55:16–19. PubMed
Dou E, Winokur RS, Sista AK. Venous access site closures using the VASCADE Vascular Closure System. J Vasc Interv Radiol 2016; 27:1885–1888. PubMed
Robertson L, Andras A, Colgan F, Jackson R. Vascular closure devices for femoral arterial puncture site haemostasis. Cochrane Database Syst Rev 2016;3:CD009541. PubMed PMC
Jiang J, Zou J, Ma H, et al.Network meta-analysis of randomized trials on the safety of vascular closure devices for femoral arterial puncture site haemostasis. Sci Rep 2015;5:13761. PubMed PMC
Della Bella P, Brugada J, Zeppenfeld K, et al.Epicardial ablation for ventricular tachycardia: a European multicenter study. Circ Arrhythm Electrophysiol 2011;4:653–659. PubMed
Dyrda K, Piers SR, van Huls van Taxis CF, Schalij MJ, Zeppenfeld K. Influence of steroid therapy on the incidence of pericarditis and atrial fibrillation after percutaneous epicardial mapping and ablation for ventricular tachycardia. Circ Arrhythm Electrophysiol 2014;7:671–676. PubMed
d’Avila A, Neuzil P, Thiagalingam A, et al.Experimental efficacy of pericardial instillation of anti-inflammatory agents during percutaneous epicardial catheter ablation to prevent postprocedure pericarditis. J Cardiovasc Electrophysiol 2007;18:1178–1183. PubMed
Sugrue A, Killu AM, Hodge DO, et al.Significance and clinical characteristics of atrial fibrillation post epicardial access. J Interv Card Electrophysiol 2017;48:141–146. PubMed
Mahapatra S, LaPar DJ, Bhamidipati CM, et al.Incidence, risk factors, and consequences of new-onset atrial fibrillation following epicardial ablation for ventricular tachycardia. Europace 2011;13:548–554. PubMed PMC
Stevenson WG, Wilber DJ, Natale A, et al.Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter Thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Siontis KC, Jame S, Sharaf Dabbagh G, et al.Thromboembolic prophylaxis protocol with warfarin after radiofrequency catheter ablation of infarct-related ventricular tachycardia. J Cardiovasc Electrophysiol 2018;29:584–590. PubMed
Patel AA, Clyne CA, Henyan NN, et al.The use of protamine after radiofrequency catheter ablation: a pilot study. J Interv Card Electrophysiol 2007;18:155–158. PubMed
Ghannam M, Chugh A, Dillon P, et al.Protamine to expedite vascular hemostasis after catheter ablation of atrial fibrillation: a randomized controlled trial. Heart Rhythm 2018;15:1642–1647. PubMed
Calkins H, Epstein A, Packer D, et al.; Cooled RF Multi Center Investigators Group. Catheter ablation of ventricular tachycardia in patients with structural heart disease using cooled radiofrequency energy: results of a prospective multicenter study. J Am Coll Cardiol 2000; 35:1905–1914. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl J Med 2007; 357:2657–2665. PubMed PMC
Tanner H, Hindricks G, Volkmer M, et al.Catheter ablation of recurrent scar-related ventricular tachycardia using electroanatomical mapping and irrigated ablation technology: results of the prospective multicenter Euro-VT-study. J Cardiovasc Electrophysiol 2010;21:47–53. PubMed
Kuck KH, Schaumann A, Eckardt L, et al.Catheter ablation of stable ventricular tachycardia before defibrillator implantation in patients with coronary heart disease (VTACH): a multicentre randomised controlled trial. Lancet 2010;375:31–40. PubMed
Al-Khatib SM, Daubert JP, Anstrom KJ, et al.Catheter ablation for ventricular tachycardia in patients with an implantable cardioverter defibrillator (CALYPSO) pilot trial. J Cardiovasc Electrophysiol 2015; 26:151–157. PubMed
Marchlinski FE, Haffajee CI, Beshai JF, et al.Long-term success of irrigated radiofrequency catheter ablation of sustained ventricular tachycardia: post-approval THERMOCOOL VT trial. J Am Coll Cardiol 2016;67:674–683. PubMed
Sapp JL, Wells GA, Parkash R, et al.Ventricular tachycardia ablation versus escalation of antiarrhythmic drugs. N Engl J Med 2016; 375:111–121. PubMed
Kuck KH, Tilz RR, Deneke T, et al.; SMS Investigators. Impact of substrate modification by catheter ablation on implantable cardioverter-defibrillator interventions in patients with unstable ventricular arrhythmias and coronary artery disease: results from the multicenter randomized controlled SMS (Substrate Modification Study). Circ Arrhythm Electrophysiol 2017;10:e004422. PubMed
Palaniswamy C, Kolte D, Harikrishnan P, et al.Catheter ablation of postinfarction ventricular tachycardia: ten-year trends in utilization, in-hospital complications, and in-hospital mortality in the United States. Heart Rhythm 2014;11:2056–2063. PubMed
Katz DF, Turakhia MP, Sauer WH, et al.Safety of ventricular tachycardia ablation in clinical practice: findings from 9699 hospital discharge records. Circ. Arrhythmia Electrophysiol 2015;8:362–370. PubMed PMC
Latchamsetty R, Yokokawa M, Morady F, et al.Multicenter outcomes for catheter ablation of idiopathic premature ventricular complexes. JACC Clin Electrophysiol 2015;1:116–123. PubMed
Pothineni NV, Deshmukh A, Padmanabhan D, et al.Complication rates of ventricular tachycardia ablation: comparison of safety outcomes derived from administrative databases and clinical trials. Int J Cardiol 2015;201:529–531. PubMed
Peichl P, Wichterle D, Pavlu L, Cihak R, Aldhoon B, Kautzner J. Complications of catheter ablation of ventricular tachycardia: a single center experience. Circ Arrhythm Electrophysiol 2014;7:684–690. PubMed
Stevenson WG, Wilber DJ, Natale A, et al.Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Calkins H, Epstein A, Packer D, et al.Catheter ablation of ventricular tachycardia in patients with structural heart disease using cooled radiofrequency energy: results of a prospective multicenter study. Cooled RF Multi Center Investigators Group. J Am Coll Cardiol 2000; 35:1905–1914. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl J Med 2007; 357:2657–2665. PubMed PMC
Kuck KH, Schaumann A, Eckardt L, et al.; VTACH Study Group. Catheter ablation of stable ventricular tachycardia before defibrillator implantation in patients with coronary heart disease (VTACH): a multicenter randomised controlled trial. Lancet 2010;375:31–40. PubMed
Santangeli P, Muser D, Zado ES, et al.Acute hemodynamic decompensation during catheter ablation of scar-related ventricular tachycardia: incidence, predictors, and impact on mortality. Circ Arrhythm Electrophysiol 2015;8:68–75. PubMed
Santangeli P, Frankel DS, Tung R, et al.Early mortality after catheter ablation of ventricular tachycardia in patients with structural heart disease. J Am Coll Cardiol 2017;69:2105–2115. PubMed
Liang JJ, Kodali S, Schaller RD, Birati EY, Marchlinski FE, Santangeli P. Intraprocedural slow continuous ultrafiltration: a novel strategy to prevent acute hemodynamic decompensation from volume overload during VT ablation. Pacing Clin Electrophysiol 2018;41:1043–1044. PubMed
Turagam MK, Vuddanda V, Atkins D, et al.Hemodynamic support in ventricular tachycardia ablation: an International VT Ablation Center Collaborative Group study. JACC Clin Electrophysiol 2017; 3:1534–1543. PubMed
Muser D, Liang JJ, Castro SA, et al.Outcomes with prophylactic use of percutaneous left ventricular assist devices in high-risk patients undergoing catheter ablation of scar-related VT: a propensity-matched analysis. Heart Rhythm 2018;15:1500–1506. PubMed
Mathuria N, Wu G, Rojas-Delgado F, et al.Outcomes of pre-emptive and rescue use of percutaneous left ventricular assist device in patients with structural heart disease undergoing catheter ablation of ventricular tachycardia. J Interv Card Electrophysiol 2017;48:27–34. PubMed
Reddy YM, Chinitz L, Mansour M, et al.Percutaneous left ventricular assist devices in ventricular tachycardia ablation: multicenter experience. Circ Arrhythm Electrophysiol 2014;7:244–250. PubMed PMC
Piccione W Jr, Goldin MD. Mitral valve dysfunction following papillary muscle cryoablation. Ann Thorac Surg 1988;46:347–348. PubMed
Tokuda M, Tedrow UB, Kojodjojo P, et al.Cather ablation of ventricular tachycardia in nonischemic heart disease. Circ Arrhythm Electrophysiol 2012;5:992–1000. PubMed
Seto AH, Abu-Fadel MS, Sparling JM, et al.Real-time ultrasound guidance facilitates femoral arterial access and reduces vascular complications: FAUST (Femoral Arterial Access With Ultrasound Trial). J Am Coll Cardiol Interv 2010;3:751–758. PubMed
Biancari F, D’Andrea V, Di Marco C, Savino G, Tiozzo V, Catania A. Meta-analysis of randomized trials on the efficacy of vascular closure devices after diagnostic angiography and angioplasty. Am Heart J 2010; 159:518–531. PubMed
Nikolsky E, Mehran R, Halkin A, et al.Vascular complications associated with arteriotomy closure devices in patients undergoing percutaneous coronary procedures: a meta-analysis. J Am Coll Cardiol 2004; 44:1200–1209. PubMed
Jongbloed MR, Bax JJ, van der Burg AE, van der Wall EE, Schalij MJ. Radiofrequency catheter ablation of ventricular tachycardia guided by intracardiac echocardiography. Eur J Echocardiogr 2004;5:34–40. PubMed
Desimone CV, Hu T, Ebrille E, et al.Catheter ablation related mitral valve injury: the importance of early recognition and rescue mitral valve repair. J Cardiovasc Electrophysiol 2014;25:971–975. PubMed PMC
Cheitlin MD, Alpert JS, Armstrong WF, et al.ACC/AHA guidelines for the clinical application of echocardiography: a report of the American College of Cardiology/American Heart Association Task Force on Practice Guidelines (Committee on Clinical Application of Echocardiography). Circulation 1997;95:1686–1744. PubMed
Stevenson WG, Friedman PL, Kocovic D, Sager PT, Saxon LA, Pavri B. Radiofrequency catheter ablation of ventricular tachycardia after myocardial infarction. Circulation 1998;98:308–314. PubMed
Stevenson WG, Wilber DJ, Natale A, et al.; Multicenter Thermocool VT Ablation Trial Investigators. Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Segal OR, Chow AW, Markides V, Schilling RJ, Peters NS, Davies W. Long-term results after ablation of infarct-related ventricular tachycardia. Heart Rhythm 2005;2:474–482. PubMed
Calkins H, Epstein A, Packer D, et al.; Cooled RF Multi Center Investigators Group. Catheter ablation of ventricular tachycardia in patients with structural heart disease using cooled radiofrequency energy: results of a prospective multicenter study. J Am Coll Cardiol 2000;35:1905–1914. PubMed
Borger van der Burg AE, de Groot NM, van Erven L, Bootsma M, van der Wall EE, Schalij MJ. Long-term follow-up after radiofrequency catheter ablation of ventricular tachycardia: a successful approach? J Cardiovasc Electrophysiol 2002;13:417–423. PubMed
Della Bella P, De Ponti R, Uriarte JA, et al.Catheter ablation and antiarrhythmic drugs for haemodynamically tolerated post-infarction ventricular tachycardia; long-term outcome in relation to acute electrophysiological findings. Eur Heart J 2002;23:414–424. PubMed
O’Callaghan PA, Poloniecki J, Sosa-Suarez G, Ruskin JN, McGovern BA, Garan H. Long-term clinical outcome of patients with prior myocardial infarction after palliative radiofrequency catheter ablation for frequent ventricular tachycardia. Am J Cardiol 2001;87:975–979. PubMed
Santangeli P, Frankel DS, Tung R, et al.; International VT Ablation Center Collaborative Group. Early mortality after catheter ablation of ventricular tachycardia in patients with structural heart disease. J Am Coll Cardiol 2017;69:2105–2115. PubMed
Khan HH, Maisel WH, Ho C, et al.Effect of radiofrequency catheter ablation of ventricular tachycardia on left ventricular function in patients with prior myocardial infarction. J Interv Card Electrophysiol 2002;7:243–247. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl JMed 2007;357:2657–2665. PubMed PMC
Marchlinski FE, Callans DJ, Gottlieb CD, Zado E. Linear ablation lesions for control of unmappable ventricular tachycardia in patients with ischemic and nonischemic cardiomyopathy. Circulation 2000;101:1288–1296. PubMed
Turagam MK, Vuddanda V, Atkins D, et al.Hemodynamic support in ventricular tachycardia ablation: an International VT Ablation Center Collaborative Group Study. JACC Clin Electrophysiol 2017;3:1534–1543. PubMed
Santangeli P, Frankel DS, Tung R, et al.Early mortality after catheter ablation of ventricular tachycardia in patients with structural heart disease. J Am Coll Cardiol 2017;69:2105–2115. PubMed
Yokokawa M, Desjardins B, Crawford T, Good E, Morady F, Bogun F. Reasons for recurrent ventricular tachycardia after catheter ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2013;61:66–73. PubMed
Frankel DS, Mountantonakis SE, Zado ES, et al.Noninvasive programmed ventricular stimulation early after ventricular tachycardia ablation to predict risk of late recurrence. J Am Coll Cardiol 2012;59:1529–1535. PubMed
Oloriz T, Baratto F, Trevisi N, et al.Defining the outcome of ventricular tachycardia ablation: timing and value of programmed ventricular stimulation. Circ Arrhythm Electrophysiol 2018;11:e005602. PubMed
Calkins H, Epstein A, Packer D, et al.; Cooled RF Multi Center Investigators Group. Catheter ablation of ventricular tachycardia in patients with structural heart disease using cooled radiofrequency energy: results of a prospective multicenter study. J Am Coll Cardiol 2000;35:1905–1914. PubMed
Stevenson WG, Wilber DJ, Natale A, et al.Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Sapp JL, Wells GA, Parkash R, et al.Ventricular tachycardia ablation versus escalation of antiarrhythmic drugs. N Engl J Med 2016; 375:111–121. PubMed
Marchlinski FE, Haffajee CI, Beshai JF, et al.Long-term success of irrigated radiofrequency catheter ablation of sustained ventricular tachycardia: post-approval THERMOCOOL VT trial. J Am Coll Cardiol 2016;67:674–683. PubMed
Kuck KH, Schaumann A, Eckardt L, et al.; VTACH Study Group. Catheter ablation of stable ventricular tachycardia before defibrillator implantation in patients with coronary heart disease (VTACH): a multicentre randomised controlled trial. Lancet 2010;375:31–40. PubMed
Al-Khatib SM, Daubert JP, Anstrom KJ, et al.Catheter ablation for ventricular tachycardia in patients with an implantable cardioverter defibrillator (CALYPSO) pilot trial. J Cardiovasc Electrophysiol 2015;26:151–157. PubMed
Tanner H, Hindricks G, Volkmer M, et al.Catheter ablation of recurrent scar-related ventricular tachycardia using electroanatomical mapping and irrigated ablation technology: results of the prospective multicenter Euro-VT-study. J Cardiovasc Electrophysiol 2010;21:47–53. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl J Med 2007;357:2657–2665. PubMed PMC
Al-Khatib SM, Stevenson WG, Ackerman MJ, et al.2017AHA/ACC/HRS guideline for management of patients with ventricular arrhythmias and the prevention of sudden cardiac death: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society. Heart Rhythm 2018; 15:e73–e189. PubMed
Liang JJ, Yang W, Santangeli P, et al.Amiodarone discontinuation or dose reduction following catheter ablation for ventricular tachycardia in structural heart disease. JACC Clin Electrophysiol 2017;3:503–511. PubMed
Moss AJ, Schuger C, Beck CA, et al.; for the MADIT-RIT Trial Investigators. Reduction in inappropriate therapy and mortality through ICD programming. N Engl J Med 2012;367:2275–2283. PubMed
Gasparini M, Proclemer A, Klersy C, et al.Effect of long-detection interval vs standard-detection interval for implantable cardioverter-defibrillators on antitachycardia pacing and shock delivery: the ADVANCE III randomized clinical trial. JAMA 2013;309:1903–1911. PubMed
Wilkoff BL, Fauchier L, Stiles MK, et al.2015HRS/EHRA/APHRS/SOLAECE expert consensus statement on optimal implantable cardioverter defibrillator programming and testing. Heart Rhythm 2016; 13:e50–e86. PubMed
Slotwiner D, Varma N, Akar JG, et al.HRS Expert Consensus Statement on remote interrogation and monitoring for cardiovascular implantable electronic devices. Heart Rhythm 2015;12:e69–e100. PubMed
Sapp JL, Wells GA, Parkash R, et al.Ventricular tachycardia ablation versus escalation of antiarrhythmic drugs. N Engl J Med 2016; 375:111–121. PubMed
Kuck KH, Schaumann A, Eckardt L, et al.; VTACH Study Group. Catheter ablation of stable ventricular tachycardia before defibrillator implantation in patients with coronary heart disease (VTACH): a multicenter randomised controlled trial. Lancet 2010;375:31–40. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl J Med 2007; 357:2657–2665. PubMed PMC
Al-Khatib SM, Daubert JP, Anstrom KJ, et al.Catheter ablation for ventricular tachycardia in patients with an implantable cardioverter defibrillator (CALYPSO) pilot trial. J Cardiovasc Electrophysiol 2015; 26:151–157. PubMed
Stevenson WG, Wilber DJ, Natale A, et al.Irrigated radiofrequency catheter ablation guided by electroanatomic mapping for recurrent ventricular tachycardia after myocardial infarction: the multicenter thermocool ventricular tachycardia ablation trial. Circulation 2008;118:2773–2782. PubMed
Souissi Z, Boule S, Hermida JS, et al.Catheter ablation reduces ventricular tachycardia burden in patients with arrhythmogenic right ventricular cardiomyopathy: insights from a north-western French multicentre registry. Europace 2018;20:362–369. PubMed
Marchlinski FE, Haffajee CI, Beshai JF, et al.Long-term success of irrigated radiofrequency catheter ablation of sustained ventricular tachycardia: post-approval THERMOCOOL VT Trial. J Am Coll Cardiol 2016;67:674–683. PubMed
Guerra F, Shkoza M, Scappini L, Flori M, Capucci A. Role of electrical storm as a mortality and morbidity risk factor and its clinical predictors: a meta-analysis. Europace 2014;16:347–353. PubMed
Rumsfeld JS, Alexander KP, Goff DC Jr, et al.Cardiovascular health: the importance of measuring patient-reported health status: a scientific statement from the American Heart Association. Circulation 2013; 127:2233–2249. PubMed
Anker SD, Agewall S, Borggrefe M, et al.The importance of patient-reported outcomes: a call for their comprehensive integration in cardiovascular clinical trials. Eur Heart J 2014;35:2001–2009. PubMed
US Food and Drug Administration. Medical Device Development Tools. Qualified Tools. Available at: https://www.fda.gov/MedicalDevices/ScienceandResearch/MedicalDeviceDevelopmentToolsMDDT/default.htm.Accessed November 18, 2018.
Stehlik J, Estep JD, Selzman CH, et al.; ROADMAP Study Investigators. Patient-reported health-related quality of life is a predictor of outcomes in ambulatory heart failure patients treated with left ventricular assist device compared with medical management: results from the ROADMAP Study (Risk Assessment and Comparative Effectiveness of Left Ventricular Assist Device and Medical Management). Circ Heart Fail 2017; 10:e003910. PubMed
Gula LJ, Doucette S, Leong-Sit P, et al.Quality of life with ablation or medical therapy for ventricular arrhythmias: a substudy of VANISH. J Cardiovasc Electrophysiol 2018;29:421–434. PubMed
Pokorney SD, Friedman DJ, Calkins H, et al.Catheter ablation of ventricular tachycardia: lessons learned from past clinical trials and implications for future clinical trials. Heart Rhythm 2016;13:1748–1754. PubMed PMC
Santangeli P, Muser D, Zado ES, et al.Acute hemodynamic decompensation during catheter ablation of scar-related ventricular tachycardia: incidence, predictors, and impact on mortality. Circ Arrhythm Electrophysiol 2015;8:68–75. PubMed
Vergara P, Tzou WS, Tung R, et al.Predictive score for identifying survival and recurrence risk profiles in patients undergoing ventricular tachycardia ablation. Circ Arrhythm Electrophysiol 2018;11:e006730. PubMed PMC
Calkins H, Awtry EH, Bunch TJ, Kaul S, Miller JM, Tedrow UB. COCATS 4 Task Force 11: Training in arrhythmia diagnosis and management, cardiac pacing, and electrophysiology. J Am Coll Cardiol 2015; 65:1854–1865. PubMed
Zipes DP, Calkins H, Daubert JP, et al.2015 ACC/AHA/HRS advanced training statement on clinical cardiac electrophysiology (a revision of the ACC/AHA 2006 update of the clinical competence statement on invasive electrophysiology studies, catheter ablation, and cardioversion). Heart Rhythm 2016;13:e3–e37. PubMed
Aliot EM, Stevenson WG, Almendral-Garrote JM, et al.EHRA/HRS expert consensus on catheter ablation of ventricular arrhythmias: developed in a partnership with the European Heart Rhythm Association (EHRA), a Registered Branch of the European Society of Cardiology (ESC), and the Heart Rhythm Society (HRS); in collaboration with the American College of Cardiology (ACC) and the American Heart Association (AHA). Heart Rhythm 2009;6:886–933. PubMed
Dubin AM, Walsh EP, Franklin W, et al.Task Force 4: Pediatric cardiology fellowship training in electrophysiology. SPCTPD/ACC/AAP/AHA. Circulation 2015;132:e75–e80. PubMed
Walsh EP, Bar-Coehn Y, Batra AS, et al.Recommendations for advanced fellowship training in clinical pediatric and congenital electrophysiology: a report from the training and credentialing committee of the Pediatric and Congenital Electrophysiology Society. Heart Rhythm 2013;10:775–781. PubMed
Maury P, Defaye P, Klug D, et al.Position paper concerning the competence, performance and environment required in the practice of complex ablation procedures. Arch Cardiovasc Dis 2019;112:67–73. PubMed
Tracy CM, Crossley GH, Bunch TJ, et al.2017 ACC/HRS lifelong learning statement for clinical cardiac electrophysiology specialists: a report of the ACC Competency Management Committee. Heart Rhythm 2018;15:e17–e34. PubMed
Accreditation Council for Graduate Medical Education. Clinical competency committees: a guidebook for programs. Available at https://www.acgme.org/Portals/0/ACGMEClinicalCompetencyCommitteeGuidebook.pdf.Accessed November 18, 2018.
Fazel R, Gerber TC, Balter S, et al.Approaches to enhancing radiation safety in cardiovascular imaging: a scientific statement from the American Heart Association. Circulation 2014;130:1730–1748. PubMed
Picano E, Vano E, Rehani MM, et al.The appropriate and justified use of medical radiation in cardiovascular imaging: a position document of the ESC Associations of Cardiovascular Imaging, Percutaneous Cardiovascular Interventions and Electrophysiology. Eur Heart J 2014;35:665–672. PubMed
Haines DE, Beheiry S, Akar JG, et al.Heart Rhythm Society expert consensus statement on electrophysiology laboratory standards: process, protocols, equipment, personnel, and safety. Heart Rhythm 2014;11:e9–e51. PubMed PMC
Deneke T, Shin D-I, Lawo T, Bösche L, et al.Catheter ablation of electrical storm in a collaborative hospital network. Am J Cardiol 2011;108:233–239. PubMed
Della Bella P, Baratto F, Tsiachris D, et al.Management of ventricular tachycardia in the setting of a dedicated unit for the treatment of complex ventricular arrhythmias: long-term outcome after ablation. Circulation 2013; 127:1359–1368. PubMed
Deneke T, Müller P, Krug J, et al.Catheter ablation in patients with electrical storm: benefit of a network of cooperating clinics. Herzschrittmacherther Elektrophysiol 2014;25:105–108. PubMed
Aliot EM, Stevenson WG, Almendral-Garrote JM, et al.EHRA/HRS expert consensus on catheter ablation of ventricular arrhythmias: developed in a partnership with the European Heart Rhythm Association (EHRA), a registered branch of the European Society of Cardiology (ESC), and the Heart Rhythm Society (HRS); in collaboration with the American College of Cardiology (ACC) and the American Heart Association (AHA). Heart Rhythm 2009;6:886–933. PubMed
Pedersen CT, Kay GN, Kalman J, et al.EHRA/HRS/APHRS expert consensus on ventricular arrhythmias. Heart Rhythm 2014; 11:e166–e196. PubMed
Al-Khatib SM, Stevenson WG, Ackerman MJ, et al.2017 AHA/ACC/HRS guideline for management of patients with ventricular arrhythmias and the prevention of sudden cardiac death: a report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society. Heart Rhythm 2018;15:e73–e189. PubMed
Reddy VY, Reynolds MR, Neuzil P, et al.Prophylactic catheter ablation for the prevention of defibrillator therapy. N Engl J Med 2007; 357:2657–2665. PubMed PMC
Kuck KH, Schaumann A, Eckardt L, et al.; VTACH Study Group. Catheter ablation of stable ventricular tachycardia before defibrillator implantation in patients with coronary heart disease (VTACH): a multicentre randomised controlled trial. Lancet 2010;375:31–40. PubMed
Kuck KH, Tilz RR, Deneke T, et al.; SMS Investigators. Impact of substrate modification by catheter ablation on implantable cardioverter-defibrillator interventions in patients with unstable ventricular arrhythmias and coronary artery disease: results from the multicenter randomized controlled SMS (Substrate Modification Study). Circ Arrhythm Electrophysiol 2017;10:e004422. PubMed
Sapp JL, Wells GA, Parkash R, et al.Ventricular tachycardia ablation versus escalation of antiarrhythmic drugs. N Engl J Med 2016; 375:111–121. PubMed
Di Biase L, Burkhardt JD, Lakkireddy D, et al.Ablation of stable VTs versus substrate ablation in ischemic cardiomyopathy: the VISTA randomized multicenter trial. J Am Coll Cardiol 2015;66:2872–2882. PubMed
Acosta J, Penela D, Andreu D, et al.Multielectrode vs. point-by-point mapping for ventricular tachycardia substrate ablation: a randomized study. Europace 2018;20:512–519. PubMed
Di Biase L, Tung R, Szili-Torok T, et al.MAGNETIC VT study: a prospective, multicenter, post-market randomized controlled trial comparing VT ablation outcomes using remote magnetic navigation-guided substrate mapping and ablation versus manual approach in a low LVEF population. J Interv Card Electrophysiol 2017;48:237–245. PubMed
Pokorney SD, Friedman DJ, Calkins H, et al.Catheter ablation of ventricular tachycardia: lessons learned from past clinical trials and implications for future clinical trials. Heart Rhythm 2016;13:1748–1754. PubMed PMC
Tung R, Vaseghi M, Frankel DS, et al.Freedom from recurrent ventricular tachycardia after catheter ablation is associated with improved survival in patients with structural heart disease: an international VT ablation center collaborative group study. Heart Rhythm 2015; 12:1997–2007. PubMed PMC
Carbucicchio C, Santamaria M, Trevisi N, et al.Catheter ablation for the treatment of electrical storm in patients with implantable cardioverter-defibrillators: short- and long-term outcomes in a prospective single-center study. Circulation 2008;117:462–469. PubMed
Yokokawa M, Kim HM, Baser K, et al.Predictive value of programmed ventricular stimulation after catheter ablation of post-infarction ventricular tachycardia. J Am Coll Cardiol 2015;65:1954–1959. PubMed
Siontis KC, Kim HM, Stevenson WG, et al.Prognostic impact of the timing of recurrence of infarct-related ventricular tachycardia after catheter ablation. Circ Arrhythm Electrophysiol 2016;9:e004432. PubMed PMC
Parkash R, Nault I, Rivard L, et al.Effect of baseline antiarrhythmic drug on outcomes with ablation in ischemic ventricular tachycardia: a VANISH substudy (ventricular tachycardia ablation versus escalated antiarrhythmic drug therapy in ischemic heart disease). Circ Arrhythm Electrophysiol 2018;11:e005663. PubMed
Gula LJ, Doucette S, Leong-Sit P, et al.Quality of life with ablation or medical therapy for ventricular arrhythmias: a substudy of VANISH. J Cardiovasc Electrophysiol 2018;29:421–434. PubMed
Coyle K, Coyle D, Nault I, et al.Cost effectiveness of ventricular tachycardia ablation versus escalation of antiarrhythmic drug therapy: the VANISH trial. JACC Clin Electrophysiol 2018;4:660–668. PubMed
Calkins H, Bigger JT Jr, Ackerman SJ, et al.Cost-effectiveness of catheter ablation in patients with ventricular tachycardia. Circulation 2000; 101:280–288. PubMed
Yokokawa M, Good E, Chugh A, et al.Intramural idiopathic ventricular arrhythmias originating in the intraventricular septum: mapping and ablation. Circ Arrhythm Electrophysiol 2012;5:258–263. PubMed
Enriquez A, Supple GE, Marchlinski FE, Garcia FC. How to map and ablate papillary muscle ventricular arrhythmias. Heart Rhythm 2017; 14:1721–1728. PubMed
Yokokawa M, Morady F, Bogun F. Injection of cold saline for diagnosis of intramural ventricular arrhythmias. Heart Rhythm 2016;13:78–82. PubMed
Yokokawa M, Jung DY, Hero AO III, Baser K, Morady F, Bogun F. Single- and dual-site pace mapping of idiopathic septal intramural ventricular arrhythmias. Heart Rhythm 2016;13:72–77. PubMed
Sivagangabalan G, Pouliopoulos J, Huang K, et al.Simultaneous biventricular noncontact mapping and ablation of septal ventricular tachycardia in a chronic ovine infarct model. Circ Arrhythm Electrophysiol 2009;2:441–449. PubMed
Anter E, Kleber AG, Rottmann M, et al.Infarct-related ventricular tachycardia: redefining the electrophysiological substrate of the isthmus during sinus rhythm. JACC Clin Electrophysiol 2018;4:1033–1048. PubMed
Wang Y, Cuculich PS, Zhang J, et al.Noninvasive electroanatomic mapping of human ventricular arrhythmias with electrocardiographic imaging. Sci Transl Med 2011;3:98ra84. PubMed PMC
Sapp JL, Dawoud F, Clements JC, Horacek BM. Inverse solution mapping of epicardial potentials: quantitative comparison with epicardial contact mapping. Circ Arrhythm Electrophysiol 2012;5:1001–1009. PubMed
Cuculich PS, Zhang J, Wang Y, et al.The electrophysiological cardiac ventricular substrate in patients after myocardial infarction: noninvasive characterization with electrocardiographic imaging. J Am Coll Cardiol 2011;58:1893–1902. PubMed PMC
Zhang J,Cooper DH,Desouza KA,et al..Electrophysiologicscarsubstrate in relation to VT: noninvasive high-resolution mapping and risk assessment with ECGI. Pacing Clin Electrophysiol 2016;39:781–791. PubMed PMC
Zhang J, Sacher F, Hoffmayer K, et al.Cardiac electrophysiological substrate underlying the ECG phenotype and electrogram abnormalities in Brugada syndrome patients. Circulation 2015;131:1950–1959. PubMed PMC
Vijayakumar R, Silva JNA, Desouza KA, et al.Electrophysiologic substrate in congenital Long QT syndrome: noninvasive mapping with electrocardiographic imaging (ECGI). Circulation 2014;130:1936–1943. PubMed PMC
Zhang J, Hocini M, Strom M, et al.The electrophysiological substrate of early repolarization syndrome: noninvasive mapping in patients. JACC Clin Electrophysiol 2017;3:894–904. PubMed PMC
Nguyen DT, Olson M, Zheng L, Barham W, Moss JD, Sauer WH. Effect of irrigant characteristics on lesion formation after radiofrequency energy delivery using ablation catheters with actively cooled tips. J Cardiovasc Electrophysiol 2015;26:792–798. PubMed
Nguyen DT, Tzou WS, Sandhu A, et al.Prospective multicenter experience with cooled radiofrequency ablation using high impedance irrigant to target deep myocardial substrate refractory to standard ablation. JACC Clin Electrophysiol 2018;4:1176–1185. PubMed
Sapp JL, Beeckler C, Pike R, et al.Initial human feasibility of infusion needle catheter ablation for refractory ventricular tachycardia. Circulation 2013;128:2289–2295. PubMed
John RM, Connell J, Termin P, et al.Characterization of warm salineenhanced radiofrequency ablation lesions in the infarcted porcine ventricular myocardium. J Cardiovasc Electrophysiol 2014;25:309–316. PubMed
Kay GN, Epstein AE, Bubien RS, Anderson PG, Dailey SM, Plumb VJ. Intracoronary ethanol ablation for the treatment of recurrent sustained ventricular tachycardia. J Am Coll Cardiol 1992;19:159–168. PubMed
Kreidieh B, Rodríguez-Mañero M, Schurmann P, Ibarra-Cortez SH, Dave AS, Valderrabano M. Retrograde coronary venous ethanol infusion for ablation of refractory ventricular tachycardia. Circ Arrhythm Electrophysiol 2016;9:e004352. PubMed PMC
Loo BW Jr, Soltys SG, Wang L, et al.Stereotactic ablative radiotherapy for the treatment of refractory cardiac ventricular arrhythmia. Circ Arrhythm Electrophysiol 2015;8:748–750. PubMed
Cuculich PS, Schill MR, Kashani R, et al.Noninvasive cardiac radiation for ablation of ventricular tachycardia. N Engl J Med 2017; 377:2325–2336. PubMed PMC
Prakosa A, Arevalo HJ, Deng D, et al.Personalized virtual-heart technology for guiding the ablation of infarct-related ventricular tachycardia. Nat Biomed Eng 2018;2:732–740. PubMed PMC
Mechanical circulatory support in ventricular arrhythmias