bibtype J - Journal Article
ARLID 0550995
utime 20240111141100.6
mtime 20220106235959.9
SCOPUS 85122136124
DOI 10.35470/2226-4116-2021-10-4-265-272
title (primary) (eng) Processing and model design of the gamma oscillation activity based on FitzHugh-Nagumo model and its interaction with slow rhythms in the brain
specification
page_count 8 s.
media_type E
serial
ARLID cav_un_epca*0373458
ISSN 2223-7038
title Cybernetics and Physics
volume_id 10
volume 4 (2021)
page_num 265-272
publisher
name Rossiiskaya Akademiya Nauk
keyword Gamma rhythm
keyword Correlation
keyword Oscillation
keyword Electrocorticogram
keyword FitzHugh-Nagumo model
author (primary)
ARLID cav_un_auth*0420376
name1 Sevasteeva
name2 E. S.
country RU
author
ARLID cav_un_auth*0420377
name1 Plotnikov
name2 S. A.
country RU
author
ARLID cav_un_auth*0215855
name1 Lynnyk
name2 Volodymyr
institution UTIA-B
full_dept (cz) Teorie řízení
full_dept Department of Control Theory
department (cz)
department TR
full_dept Department of Control Theory
fullinstit Ústav teorie informace a automatizace AV ČR, v. v. i.
source
source_type článek v odborném periodiku
source_size 1,35 MB
url http://lib.physcon.ru/doc?id=46eb05d969a0
cas_special
abstract (eng) The brain is in a state of processing information 24 hours a day. There are millions of processes proceeding in it accompanied by various spectra of rhythms. This paper tests the hypothesis that the slow delta rhythm excites the gamma rhythm oscillations. Unlike other papers, we determine the slow rhythm spectrum not at the hypothesis stage but during the experiment. We design algorithms of filtration, envelope extraction, and correlation coefficient calculation for signal processing. Moreover, we examine the data on all electroencephalogram channels, which allows us to make a more reasonable conclusion. We confirm that a slow delta rhythm excites a fast gamma rhythm with an amplitude-phase type of interaction and calculate a delay between these two signals equal to about half a second.
result_subspec SCOPUS
RIV BC
FORD0 10000
FORD1 10100
FORD2 10102
reportyear 2022
num_of_auth 3
mrcbC52 4 A sml 4as 20231122150237.3
inst_support RVO:67985556
permalink http://hdl.handle.net/11104/0326620
cooperation
ARLID cav_un_auth*0420378
name Saint Petersburg State University Institute for Problems of Mechanical Engineering Saint-Petersburg
country RU
confidential S
contract
name Transfer of Copyright Agreement
date 20220104
mrcbC91 A
mrcbT16-s 0.270
mrcbT16-E Q4
arlyear 2021
mrcbTft \nSoubory v repozitáři: lynnyk-0550995-copyright_form_SevPloLyn.pdf
mrcbU14 85122136124 SCOPUS
mrcbU24 PUBMED
mrcbU34 WOS
mrcbU56 článek v odborném periodiku 1,35 MB
mrcbU63 cav_un_epca*0373458 Cybernetics and Physics 2223-7038 Roč. 10 č. 4 2021 265 272 Rossiiskaya Akademiya Nauk