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Data-Driven Phenotyping of Central Disorders of Hypersomnolence With Unsupervised Clustering

. 2022 Jun 07 ; 98 (23) : e2387-e2400. [epub] 20220418

Language English Country United States Media print-electronic

Document type Journal Article, Observational Study, Research Support, Non-U.S. Gov't

Links

PubMed 35437263
PubMed Central PMC9202524
DOI 10.1212/wnl.0000000000200519
PII: WNL.0000000000200519
Knihovny.cz E-resources

BACKGROUND AND OBJECTIVES: Recent studies fueled doubts as to whether all currently defined central disorders of hypersomnolence are stable entities, especially narcolepsy type 2 and idiopathic hypersomnia. New reliable biomarkers are needed, and the question arises of whether current diagnostic criteria of hypersomnolence disorders should be reassessed. The main aim of this data-driven observational study was to see whether data-driven algorithms would segregate narcolepsy type 1 and identify more reliable subgrouping of individuals without cataplexy with new clinical biomarkers. METHODS: We used agglomerative hierarchical clustering, an unsupervised machine learning algorithm, to identify distinct hypersomnolence clusters in the large-scale European Narcolepsy Network database. We included 97 variables, covering all aspects of central hypersomnolence disorders such as symptoms, demographics, objective and subjective sleep measures, and laboratory biomarkers. We specifically focused on subgrouping of patients without cataplexy. The number of clusters was chosen to be the minimal number for which patients without cataplexy were put in distinct groups. RESULTS: We included 1,078 unmedicated adolescents and adults. Seven clusters were identified, of which 4 clusters included predominantly individuals with cataplexy. The 2 most distinct clusters consisted of 158 and 157 patients, were dominated by those without cataplexy, and among other variables, significantly differed in presence of sleep drunkenness, subjective difficulty awakening, and weekend-week sleep length difference. Patients formally diagnosed as having narcolepsy type 2 and idiopathic hypersomnia were evenly mixed in these 2 clusters. DISCUSSION: Using a data-driven approach in the largest study on central disorders of hypersomnolence to date, our study identified distinct patient subgroups within the central disorders of hypersomnolence population. Our results contest inclusion of sleep-onset REM periods in diagnostic criteria for people without cataplexy and provide promising new variables for reliable diagnostic categories that better resemble different patient phenotypes. Cluster-guided classification will result in a more solid hypersomnolence classification system that is less vulnerable to instability of single features.

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Fronczek R, Arnulf I, Baumann CR, Maski K, Pizza F, Trotti LM. To split or to lump? Classifying the central disorders of hypersomnolence. Sleep. 2020;43(8):zsaa044. PubMed PMC

Gauld C, Ouazzani K, Micoulaud-Franchi JA. To split or to lump? Classifying the central disorders of hypersomnolence: sleep split requires epistemological tools and systematic data-driven conceptual analysis. Sleep. 2020;43(9):zsaa091. PubMed

Lammers GJ, Bassetti CLA, Dolenc-Groselj L, et al. . Diagnosis of central disorders of hypersomnolence: a reappraisal by European experts. Sleep Med Rev. 2020;52:101306. PubMed

Maski K, Mignot E, Scammell TE. Commentary on Lammers et al, diagnosis of central disorders of hypersomnolence: challenges in defining central disorders of hypersomnolence. Sleep Med Rev. 2020;52:101327. PubMed

Baumann CR, Mignot E, Lammers GJ, et al. . Challenges in diagnosing narcolepsy without cataplexy: a consensus statement. Sleep. 2014;37(6):1035-1042. PubMed PMC

Evangelista E, Lopez R, Barateau L, et al. . Alternative diagnostic criteria for idiopathic hypersomnia: a 32-hour protocol. Ann Neurol. 2018;83(2):235-247. PubMed

International Classification of Sleep Disorders–Third Edition (ICSD-3). American Academy of Sleep Medicine; 2014.

Lopez R, Doukkali A, Barateau L, et al. . Test-retest reliability of the multiple sleep latency test in central disorders of hypersomnolence. Sleep. 2017;40(12):zsx164. PubMed

Trotti LM, Staab BA, Rye DB. Test-retest reliability of the multiple sleep latency test in narcolepsy without cataplexy and idiopathic hypersomnia. J Clin Sleep Med. 2013;9(8):789-795. PubMed PMC

Cairns A, Trotti LM, Bogan R. Demographic and nap-related variance of the MSLT: results from 2,498 suspected hypersomnia patients: clinical MSLT variance. Sleep Med. 2019;55:115-123. PubMed PMC

Morrish E, King MA, Smith IE, Shneerson JM. Factors associated with a delay in the diagnosis of narcolepsy. Sleep Med. 2004;5(1):37-41. PubMed

Luca G, Haba-Rubio J, Dauvilliers Y, et al. . Clinical, polysomnographic and genome-wide association analyses of narcolepsy with cataplexy: a European Narcolepsy Network study. J Sleep Res. 2013;22(5):482-495. PubMed

Stevens MC, Fein DA, Dunn M, et al. . Subgroups of children with autism by cluster analysis: a longitudinal examination. J Am Acad Child Adolesc Psychiatry. 2000;39(3):346-352. PubMed

Calamari JE, Wiegartz PS, Janeck AS. Obsessive-compulsive disorder subgroups: a symptom-based clustering approach. Behav Res Ther. 1999;37(2):113-125. PubMed

Tokuda T, Yoshimoto J, Shimizu Y, et al. . Identification of depression subtypes and relevant brain regions using a data-driven approach. Sci Rep. 2018;8(1):14082. PubMed PMC

Bailly S, Destors M, Grillet Y, et al. . Obstructive sleep apnea: a cluster analysis at time of diagnosis. PLoS One. 2016;11(6):e0157318. PubMed PMC

Mu J, Chaudhuri KR, Bielza C, de Pedro-Cuesta J, Larrañaga P, Martinez-Martin P. Parkinson's disease subtypes identified from cluster analysis of motor and non-motor symptoms. Front Aging Neurosci. 2017;9:301. PubMed PMC

Khatami R, Luca G, Baumann CR, et al. . The European Narcolepsy Network (EU-NN) database. J Sleep Res. 2016;25(3):356-364. PubMed

Zhang Z, Gool J, Fronczek R, et al. . New 2013 incidence peak in childhood narcolepsy: more than vaccination?. Sleep. 2020;44(2):zsaa172. PubMed

Zhang Z, Mayer G, Dauvilliers Y, et al. . Exploring the clinical features of narcolepsy type 1 versus narcolepsy type 2 from European Narcolepsy Network database with machine learning. Sci Rep. 2018;8(1):10628. PubMed PMC

Bowerbird. Accessed April 28, 2021. github.com/MartijnOei/Bowerbird

Šonka K, Susta M, Billiard M. Narcolepsy with and without cataplexy, idiopathic hypersomnia with and without long sleep time: a cluster analysis. Sleep Med. 2015;16(2):225-231. PubMed

Cook JD, Rumble ME, Plante DT. Identifying subtypes of hypersomnolence disorder: a clustering analysis. Sleep Med. 2019;64:71-76. PubMed

Trotti LM. Waking up is the hardest thing I do all day: sleep inertia and sleep drunkenness. Sleep Med Rev. 2017;35:76-84. PubMed PMC

Roth B. Sleep drunkenness and sleep paralysis. Neurol Psychiatr Ceskoslov. 1956;19:48-58. PubMed

Roth B, Nevsimalova S, Rechtschaffen A. Hypersomnia with "sleep drunkenness. Arch Gen Psychiatry. 1972;26(5):456-462. PubMed

Roth B, Nevsímalová S, Ságová V, Paroubková D, Horáková A. Neurological, psychological and polygraphic findings in sleep drunkenness. Schweiz Arch Neurol Neurochir Psychiatr. 1981;129(2):209-222. PubMed

Vernet C, Arnulf I. Idiopathic hypersomnia with and without long sleep time: a controlled series of 75 patients. Sleep. 2009;32(6):753-759. PubMed PMC

Bassetti C, Gugger M, Bischof M, et al. . The narcoleptic borderland: a multimodal diagnostic approach including cerebrospinal fluid levels of hypocretin-1 (orexin A). Sleep Med. 2003;4(1):7-12. PubMed

Billiard M, Šonka K. Idiopathic hypersomnia. Sleep Med Rev. 2016;29:23-33. PubMed

Billiard M, Dauvilliers Y. Idiopathic hypersomnia. Sleep Med Rev. 2001;5(5):349-358. PubMed

Nevsimalova S, Susta M, Prihodova I, Horvat EM, Milata M, Šonka K. Idiopathic hypersomnia: a homogeneous or heterogeneous disease? Sleep Med. 2021;80:86-91. PubMed

Gool JK, van der Werf YD, Lammers GJ, Fronczek R. The sustained attention to response task shows lower cingulo-opercular and frontoparietal activity in people with narcolepsy type 1: an fMRI study on the neural regulation of attention. Brain Sci. 2020;10(7):419. PubMed PMC

Fronczek R, Middelkoop HA, van Dijk JG, Lammers GJ. Focusing on vigilance instead of sleepiness in the assessment of narcolepsy: high sensitivity of the Sustained Attention to Response Task (SART). Sleep. 2006;29(2):187-191. PubMed

Van Schie MK, Thijs RD, Fronczek R, Middelkoop HA, Lammers GJ, Van Dijk JG. Sustained Attention to Response Task (SART) shows impaired vigilance in a spectrum of disorders of excessive daytime sleepiness. J Sleep Res. 2012;21(4):390-395. PubMed

Thomann J, Baumann CR, Landolt HP, Werth E. Psychomotor vigilance task demonstrates impaired vigilance in disorders with excessive daytime sleepiness. J Clin Sleep Med. 2014;10(9):1019-1024. PubMed PMC

Bastuji H, Perrin F, Garcia-Larrea L. Event-related potentials during forced awakening: a tool for the study of acute sleep inertia. J Sleep Res. 2003;12(3):189-206. PubMed

Anderson KN, Pilsworth S, Sharples LD, Smith IE, Shneerson JM. Idiopathic hypersomnia: a study of 77 cases. Sleep. 2007;30(10):1274-1281. PubMed PMC

International Classification of Sleep Disorders: Diagnostic and Coding Manual, 2 ed. American Academy of Sleep Medicine; 2005.

Vernet C, Leu-Semenescu S, Buzare MA, Arnulf I. Subjective symptoms in idiopathic hypersomnia: beyond excessive sleepiness. J Sleep Res. 2010;19(4):525-534. PubMed

Evangelista E, Rassu AL, Barateau L, et al. . Characteristics associated with hypersomnia and excessive daytime sleepiness identified by extended polysomnography recording. Sleep. 2020;44(5):zsaa264. PubMed

Dietmann A, Gallino C, Wenz E, Mathis J, Bassetti CLA. Multiple sleep latency test and polysomnography in patients with central disorders of hypersomnolence. Sleep Med. 2021;79:6-10. PubMed

Dauvilliers Y, Evangelista E, Barateau L, et al. . Measurement of symptoms in idiopathic hypersomnia: the Idiopathic Hypersomnia Severity Scale. Neurology. 2019;92(15):e1754–e1762. PubMed

Won C, Mahmoudi M, Qin L, Purvis T, Mathur A, Mohsenin V. The impact of gender on timeliness of narcolepsy diagnosis. J Clin Sleep Med. 2014;10(1):89-95. PubMed PMC

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