Noninvasive arterial compliance estimation

. 2021 Dec 30 ; 70 (Suppl4) : S483-S494.

Jazyk angličtina Země Česko Médium print

Typ dokumentu přehledy, časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid35199538

Arterial compliance is an important cardiovascular parameter characterizing mechanical and structural properties of arteries and significantly influencing ventricular-arterial coupling. Decreased arterial compliance is associated with several physiological states and pathological processes. Furthermore, arterial compliance is influenced by other cardiovascular parameters even at short time scales. Today, there are numerous noninvasive methods of estimation arterial compliance in vivo introducing some level of confusion about selection of the best method for particular application and measurement setting. In this review, the most common noninvasive methods of arterial compliance estimation are summarized, discussed and categorized. Finally, interpretation of estimated arterial compliance in the context of other possible confounders is discussed.

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ARAI T, LEE K, STENGER MB, PLATTS SH, MECK JV, COHEN RJ. Preliminary application of a novel algorithm to monitor changes in pre-flight total peripheral resistance for prediction of post-flight orthostatic intolerance in astronauts. Acta Astronaut. 2011;68:770–777. doi: 10.1016/j.actaastro.2010.10.008. DOI

BANK AJ, WILSON RF, KUBO SH, HOLTE JE, DRESING TJ, WANG H. Direct effects of smooth muscle relaxation and contraction on in vivo human brachial artery elastic properties. Circ Res. 1995;77:1008–1016. doi: 10.1161/01.RES.77.5.1008. PubMed DOI

BUTLIN M, TAN I, SPRONCK B, AVOLIO AP. Measuring arterial stiffness in animal experimental studies. Arterioscler Thromb Vasc Biol. 2020;40:1068–1077. doi: 10.1161/ATVBAHA.119.313861. PubMed DOI PMC

CAVALCANTE JL, LIMA JAC, REDHEUIL A, AL-MALLAH MH. Aortic stiffness: current understanding and future directions. J Am Coll Cardiol. 2011;57:1511–1522. doi: 10.1016/j.jacc.2010.12.017. PubMed DOI

CHANG S, WANG J-J, SU H-M, LIU C-P. On Calculating the Time-Varying Elastance Curve of a Radial Artery Using a Miniature Vibration Method. 13th International Conference on Biomedical Engineering; 2009; Berlin, Heidelberg: Springer; pp. 540–542. DOI

CHIRINOS JA. Arterial stiffness: basic concepts and measurement techniques. J Cardiovasc Transl Res. 2012;5:243–255. doi: 10.1007/s12265-012-9359-6. PubMed DOI

COHEN DL, TOWNSEND RR. Update on pathophysiology and treatment of hypertension in the elderly. Curr Hypertens Rep. 2011;13:330–337. doi: 10.1007/s11906-011-0215-x. PubMed DOI

COHEN J, PIGNANELLI C, BURR J. The Effect of Body Position on Measures of Arterial Stiffness in Humans. J Vasc Res. 2020;57:143–151. doi: 10.1159/000506351. PubMed DOI

CYBULSKI G. Ambulatory Impedance Cardiography: The Systems and their Applications. Springer-Verlag; Berlin Heidelberg: 2011. DOI

CZIPPELOVA B, TURIANIKOVA Z, KROHOVA J, WISZT R, LAZAROVA Z, POZORCIAKOVA K, CILJAKOVA M, JAVORKA M. Arterial stiffness and endothelial function in young obese patients - vascular resistance matters. J Atheroscler Thromb. 2019;26:1015–1025. doi: 10.5551/jat.47530. PubMed DOI PMC

DRUMMOND KE, MURPHY E. Minimally invasive cardiac output monitors. Contin Educ Anaesth Crit Care Pain. 2012;12:5–10. doi: 10.1093/bjaceaccp/mkr044. DOI

DUJARDIN JP, STONE DN. Characteristic impedance of the proximal aorta determined in the time and frequency domain: a comparison. Med Biol Eng Comput. 1981;19:565–568. doi: 10.1007/BF02442770. PubMed DOI

FRANK O. Die Grundform des arteriellen Pulses. Z Für Biol. 1899;37:483–526.

FRANKLIN SS. Hypertension in older people: part 1. J Clin Hypertens Greenwich Conn. 2006;8:444–449. doi: 10.1111/j.1524-6175.2006.05113.x. PubMed DOI PMC

HALLOCK P, BENSON IC. Studies on the elastic properties of human isolated aorta. J Clin Invest. 1937;16:595–602. doi: 10.1172/JCI100886. PubMed DOI PMC

HALUSKA BA, JEFFRIESS L, BROWN J, CARLIER S, MARWICK TH. A comparison of methods for assessing total arterial compliance. J Hum Hypertens. 2010;24:254–262. doi: 10.1038/jhh.2009.92. PubMed DOI

HASEGAWA M, RODBARD S. Effect of posture on arterial pressures, timing of the arterial sounds and pulse wave velocities in the extremities. Cardiology. 1979;64:122–132. doi: 10.1159/000170585. PubMed DOI

HUIJBEN AMT, MATTACE-RASO FUS, DEINUM J, LENDERS J, van den MEIRACKER AH. Aortic augmentation index and pulse wave velocity in response to head-up tilting: effect of autonomic failure. J Hypertens. 2012;30:307–314. doi: 10.1097/HJH.0b013e32834f09ee. PubMed DOI

JACKSON CE, SHIRODARIA CC, LEE JMS, FRANCIS JM, CHOUDHURY RP, CHANNON KM, NOBLE JA, NEUBAUER S, ROBSON MD. Reproducibility and accuracy of automated measurement for dynamic arterial lumen area by cardiovascular magnetic resonance. Int J Cardiovasc Imaging. 2009;25:797–808. doi: 10.1007/s10554-009-9495-5. PubMed DOI

KIM DH, BRAAM B. Assessment of arterial stiffness using applanation tonometry. Can J Physiol Pharmacol. 2013;91 doi: 10.1139/cjpp-2013-0010. PubMed DOI

KLABUNDE RE. Cardiovascular Physiology Concepts. Lippincot, Williams & Wilkins; Philadelphia: 2012.

KORPAS D, HÁLEK J, DOLEZAL L. Parameters describing the pulse wave. Physiol Res. 2009;58:473–479. doi: 10.33549/physiolres.931468. PubMed DOI

KROEKER EJ, WOOD EH. Comparison of simultaneously recorded central and peripheral arterial pressure pulses during rest, exercise and tilted position in man. irc Res. 1955;3:623–632. doi: 10.1161/01.RES.3.6.623. PubMed DOI

LANGEWOUTERS GJ, WESSELING KH, GOEDHARD WJ. The static elastic properties of 45 human thoracic and 20 abdominal aortas in vitro and the parameters of a new model. J Biomech. 1984;17:425–435. doi: 10.1016/0021-9290(84)90034-4. PubMed DOI

LANTELME P, MESTRE C, LIEVRE M, GRESSARD A, MILON H. Heart rate: an important confounder of pulse wave velocity assessment. Hypertens Dallas Tex 1979. 2002;39:1083–1087. doi: 10.1161/01.HYP.0000019132.41066.95. PubMed DOI

LASKEY WK, PARKER HG, FERRARI VA, KUSSMAUL WG, NOORDERGRAAF A. Estimation of total systemic arterial compliance in humans. J Appl Physiol Bethesda Md 1985. 1990;69:112–119. doi: 10.1152/jappl.1990.69.1.112. PubMed DOI

LAURENT S, COCKCROFT J, VAN BORTEL L, BOUTOUYRIE P, GIANNATTASIO C, HAYOZ D, PANNIER B, VLACHOPOULOS C, WILKINSON I, STRUIJKER-BOUDIER H EUROPEAN NETWORK FOR NON-INVASIVE INVESTIGATION OF LARGE ARTERIES. Expert consensus document on arterial stiffness: methodological issues and clinical applications. Eur Heart J. 2006;27:2588–2605. doi: 10.1093/eurheartj/ehl254. PubMed DOI

LEVENSON JA, SAFAR ME, SIMON AC, KHEDER AI, DAOU JN, LEVY BI. Systemic arterial compliance and diastolic runoff in essential hypertension. Angiology. 1981;32:402–413. doi: 10.1177/000331978103200606. PubMed DOI

LIU Z, BRIN KP, YIN FC. Estimation of total arterial compliance: an improved method and evaluation of current methods. Am J Physiol. 1986;251:H588–600. doi: 10.1152/ajpheart.1986.251.3.H588. PubMed DOI

LUCAS CL, WILCOX BR, HA B, HENRY GW. Comparison of time domain algorithms for estimating aortic characteristic impedance in humans. IEEE Trans Biomed Eng. 1988;35:62–68. doi: 10.1109/10.1337. PubMed DOI

LYLE AN, RAAZ U. Killing me unsoftly: causes and mechanisms of arterial stiffness. Arterioscler Thromb Vasc Biol. 2017;37:e1–e11. doi: 10.1161/ATVBAHA.116.308563. PubMed DOI PMC

MATSUMURA K, NOGUCHI H, ROLFE P, YAMAKOSHI T, MATSUOKA Y. Differential Effect of Two Mental Stress Tasks on Arterial Stiffness. Jpn Psychol Res. 2019;61:249–261. doi: 10.1111/jpr.12235. DOI

MATTACE-RASO FUS, VAN DER CAMMEN TJM, HOFMAN A, VAN POPELE NM, BOS ML, SCHALEKAMP MADH, ASMAR R, RENEMAN RS, HOEKS APG, BRETELER MMB, WITTEMAN JCM. Arterial stiffness and risk of coronary heart disease and stroke: the Rotterdam Study. Circulation. 2006;113:657–663. doi: 10.1161/CIRCULATIONAHA.105.555235. PubMed DOI

MEINDERS JM, HOEKS APG. Simultaneous assessment of diameter and pressure waveforms in the carotid artery. Ultrasound Med Biol. 2004;30:147–154. doi: 10.1016/j.ultrasmedbio.2003.10.014. PubMed DOI

NARDONE M, INCOGNITO ANTHONY V, MILLAR PHILIP J. Evidence for pressure-independent sympathetic modulation of central pulse wave velocity. J Am Heart Assoc. 2018;7:e007971. doi: 10.1161/JAHA.117.007971. PubMed DOI PMC

NICHOLS WW, CONTI CR, WALKER WE, MILNOR WR. Input impedance of the systemic circulation in man. Circ Res. 1977;40:451–458. doi: 10.1161/01.RES.40.5.451. PubMed DOI

O’ROURKE MF, HASHIMOTO J. Mechanical factors in arterial aging: a clinical perspective. J Am Coll Cardiol. 2007;50:1–13. doi: 10.1016/j.jacc.2006.12.050. PubMed DOI

O’ROURKE MF, SAFAR ME. Relationship between aortic stiffening and microvascular disease in brain and kidney: cause and logic of therapy. Hypertens Dallas Tex 1979. 2005;46:200–204. doi: 10.1161/01.HYP.0000168052.00426.65. PubMed DOI

PAGANI M, MIRSKY I, BAIG H, MANDERS WT, KERKHOF P, VATNER SF. Effects of age on aortic pressure-diameter and elastic stiffness-stress relationships in unanesthetized sheep. Circ Res. 1979;44:420–429. doi: 10.1161/01.RES.44.3.420. PubMed DOI

PENAZ J. Photoelectric measurement of blood pressure, volume and flow in the finger. Digest of the 10th International Conference on Medical and Biological Engineering; 1973.p. 104.

QURESHI MU, COLEBANK M, SCHREIER D, TABIMA DM, HAIDER MA, CHESLER NC, OLUFSEN MS. Characteristic Impedance: Frequency or time domain approach? Physiol Meas. 2018;39:014004. doi: 10.1088/1361-6579/aa9d60. PubMed DOI PMC

RANDALL OS, ESLER MD, CALFEE RV, BULLOCH GF, MAISEL AS, CULP B. Arterial compliance in hypertension. Aust N Z J Med. 1976;6(Suppl 2):49–59. doi: 10.1111/j.1445-5994.1976.tb03323.x. PubMed DOI

REMINGTON JW, NOBACK CR. Volume elasticity characteristics of the human aorta and prediction of the stroke volume from the pressure pulse. Am J Physiol. 1948;153:298–308. doi: 10.1152/ajplegacy.1948.153.2.298. PubMed DOI

ROY CS. The elastic properties of the arterial wall. J Physiol. 1881;3:125–159. doi: 10.1113/jphysiol.1881.sp000088. PubMed DOI PMC

SATO T, NISHINAGA M, KAWAMOTO A, OZAWA T, TAKATSUJI H. Accuracy of a continuous blood pressure monitor based on arterial tonometry. Hypertens Dallas Tex 1979. 1993;21:866–874. doi: 10.1161/01.HYP.21.6.866. PubMed DOI

SEGERS P, RIETZSCHEL ER, DE BUYZERE ML, DE BACQUER D, VAN BORTEL LM, DE BACKER G, GILLEBERT TC, VERDONCK PR. Assessment of pressure wave reflection: getting the timing right! Physiol Meas. 2007;28:1045–1056. doi: 10.1088/0967-3334/28/9/006. PubMed DOI

SELF DA, EWERT DL, SWOPE RD, CRISMAN RP, LATHAM RD. Beat-to-beat determination of peripheral resistance and arterial compliance during +Gz centrifugation. Aviat Space Environ Med. 1994;65:396–403. PubMed

SELWANESS M, VAN DEN BOUWHUIJSEN Q, MATTACE-RASO FUS, VERWOERT GC, HOFMAN A, FRANCO OH, WITTEMAN JCM, VAN DER LUGT A, VERNOOIJ MW, WENTZEL JJ. Arterial stiffness is associated with carotid intraplaque hemorrhage in the general population: the Rotterdam study. Arterioscler Thromb Vasc Biol. 2014;34:927–932. doi: 10.1161/ATVBAHA.113.302603. PubMed DOI

SHIM Y, PASIPOULARIDES A, STRALEY CA, HAMPTON TG, SOTO PF, OWEN CH, DAVIS JW, GLOWER DD. Arterial windkessel parameter estimation: a new time-domain method. Ann Biomed Eng. 1994;22:66–77. doi: 10.1007/BF02368223. PubMed DOI

SIMON AC, LAURENT S, LEVENSON JA, BOUTHIER JE, SAFAR ME. Estimation of forearm arterial compliance in normal and hypertensive men from simultaneous pressure and flow measurements in the brachial artery, using a pulsed Doppler device and a first-order arterial model during diastole. Cardiovasc Res. 1983;17:331–338. doi: 10.1093/cvr/17.6.331. PubMed DOI

STERGIOPULOS N, MEISTER JJ, WESTERHOF N. Evaluation of methods for estimation of total arterial compliance. Am J Physiol-Heart Circ Physiol. 1995;268:H1540–H1548. doi: 10.1152/ajpheart.1995.268.4.H1540. PubMed DOI

STERGIOPULOS N, MEISTER JJ, WESTERHOF N. Simple and accurate way for estimating total and segmental arterial compliance: the pulse pressure method. Ann Biomed Eng. 1994;22:392–397. doi: 10.1007/BF02368245. PubMed DOI

SVAČINOVÁ J, HRUŠKOVÁ J, JAKUBÍK J, BUDINSKAYA K, HIDEGOVÁ S, FABŠÍK M, SIEGLOVÁ H, KAŠČÁKOVÁ Z, NOVÁK J, NOVÁKOVÁ Z. Variability of peripheral pulse wave velocity in patients with diabetes mellitus type 2 during orthostatic challenge. Physiol Res. 2020;69:S433–S441. doi: 10.33549/physiolres.934594. PubMed DOI PMC

TAN I, SPRONCK B, KIAT H, BARIN E, REESINK KD, DELHAAS T, AVOLIO AP, BUTLIN M. Heart Rate Dependency of Large Artery Stiffness. Hypertens Dallas Tex 1979. 2016;68:236–242. doi: 10.1161/HYPERTENSIONAHA.116.07462. PubMed DOI

TOOROP GP, WESTERHOF N, ELZINGA G. Beat-to-beat estimation of peripheral resistance and arterial compliance during pressure transients. Am J Physiol. 1987;252:H1275–1283. doi: 10.1152/ajpheart.1987.252.6.H1275. PubMed DOI

VARDOULIS O, PAPAIOANNOU TG, STERGIOPULOS N. On the estimation of total arterial compliance from aortic pulse wave velocity. Ann Biomed Eng. 2012;40:2619–2626. doi: 10.1007/s10439-012-0600-x. PubMed DOI

VERMEERSCH SJ, RIETZSCHEL ER, DE BUYZERE ML, DE BACQUER D, DE BACKER G, VAN BORTEL LM, GILLEBERT TC, VERDONCK PR, SEGERS P. Determining carotid artery pressure from scaled diameter waveforms: comparison and validation of calibration techniques in 2026 subjects. Physiol Meas. 2008;29:1267–1280. doi: 10.1088/0967-3334/29/11/003. PubMed DOI

VLACHOPOULOS C, AZNAOURIDIS K, STEFANADIS C. Prediction of cardiovascular events and all-cause mortality with arterial stiffness: a systematic review and meta-analysis. J Am Coll Cardiol. 2010;55:1318–1327. doi: 10.1016/j.jacc.2009.10.061. PubMed DOI

VLACHOPOULOS C, KOSMOPOULOU F, ALEXOPOULOS N, IOAKEIMIDIS N, SIASOS G, STEFANADIS C. Acute mental stress has a prolonged unfavorable effect on arterial stiffness and wave reflections. Psychosom Med. 2006;68:231–237. doi: 10.1097/01.psy.0000203171.33348.72. PubMed DOI

WESSELING KH, JANSEN JR, SETTELS JJ, SCHREUDER JJ. Computation of aortic flow from pressure in humans using a nonlinear, three-element model. J Appl Physiol Bethesda Md 1985. 1993;74:2566–2573. doi: 10.1152/jappl.1993.74.5.2566. PubMed DOI

WESTERHOF N, ELZINGA G, SIPKEMA P. An artificial arterial system for pumping hearts. J Appl Physiol. 1971;31:776–781. doi: 10.1152/jappl.1971.31.5.776. PubMed DOI

WESTERHOF N, STERGIOPULOS N, NOBLE MIM, WESTERHOF B. Snapshots of Hemodynamics: An Aid for Clinical Research and Graduate Education. 3rd ed. Springer International Publishing; 2019. DOI

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