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dc.coverage.spatialbiomedical data
dc.coverage.spatialelectroencephalograms
dc.coverage.spatialevoked and spontaneous brain signals
dc.coverage.spatialHurst exponent
dc.coverage.spatialiving systems
dc.coverage.spatialfast and slow algorithms
dc.coverage.spatiallocalization
dc.coverage.spatialpersistent and antipersistent correlations
dc.coverage.spatialscaling
dc.creatorDemin S., Yunusov V., Elenev A., Minkin A., Averkiev D.
dc.date2023
dc.date.accessioned2025-08-22T12:19:11Z-
dc.date.available2025-08-22T12:19:11Z-
dc.date.issued2023
dc.identifier.identifierRU\НТБ СГАУ\541919
dc.identifier.citationThe study of spatiotemporal scaling features and correlations in complex biomedical data / S. Demin, V. Yunusov, A. Elenev [и др.] // Информационные технологии и нанотехнологии (ИТНТ-2023) : сб. тр. по материалам IX Междунар. конф. и молодеж. шк. (г. Самара, 17-23 апр. 2023 г.): в 6 т. / М-во науки и высш. образования Рос. Федерации, Самар. нац. исслед. ун-т им. С. П. Королева (Самар. ун-т), Ин-т систем обраб. изобр. РАН - Фил. Федер. науч.-исслед. центра "Кристаллография и фотоника" Рос. акад. наук. - Самара : Изд-во Самар. ун-та, 2023Т. 6: Информационные технологии в биомедицине / под ред. В. П. Захарова. - 2023. - С. 060032.
dc.identifier.urihttp://repo.ssau.ru/jspui/handle/123456789/13226-
dc.description.abstractIn this research, we demonstrate the capabilities of the normalized range method (R/S analysis) in the study of fractal patterns in biomedical data of complex living systems.The Hurst exponent allows differentiating temporal signals in the presence of minimal information about the complex system under study, depending on the nature of the correlations manifestation. The capabilities of the proposed algorithms were demonstrated by analyzing the scaling features of the temporal dynamics of the tremor rate in Parkinson's disease, the bioelectrical activity of the brain of patients with epilepsy, including those under external influences. The results can be used in computational biophysics and physics of complex systems to search for diagnostic criteria for neurological and neurodegenerative diseases, as well as to study the processes of biological aging and changes in the “physiological complexity” of the human body.
dc.languageeng
dc.relation.ispartofИнформационные технологии и нанотехнологии (ИТНТ-2023) : сб. тр. по материалам IX Междунар. конф. и молодеж. шк. (г. Самара, 17-23 апр. 2023 г.): в 6
dc.sourceИнформационные технологии и нанотехнологии (ИТНТ-2023). - Т. 6 : Информационные технологии в биомедицине
dc.subjectbiomedical data
dc.subjectelectroencephalograms
dc.subjectevoked and spontaneous brain signals
dc.subjectHurst exponent
dc.subjectiving systems
dc.subjectfast and slow algorithms
dc.subjectlocalization
dc.subjectpersistent and antipersistent correlations
dc.subjectscaling
dc.titleThe study of spatiotemporal scaling features and correlations in complex biomedical data
dc.typeText
dc.citation.spage060032
dc.citation.volume6
local.contributor.authorDemin S.
local.contributor.authorYunusov V.
local.contributor.authorElenev A.
local.contributor.authorMinkin A.
local.contributor.authorAverkiev D.
local.identifier.oldurihttp://repo.ssau.ru/handle/Informacionnye-tehnologii-i-nanotehnologii/The-study-of-spatiotemporal-scaling-features-and-correlations-in-complex-biomedical-data-106061
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