Changes in the Power and Coupling of Infra-Slow Oscillations in the Signals of EEG Leads during Stress-Inducing Cognitive Tasks

Author:

Prokhorov Mikhail D.12ORCID,Borovkova Ekaterina I.134,Hramkov Aleksey N.15,Dubinkina Elizaveta S.15ORCID,Ponomarenko Vladimir I.125ORCID,Ishbulatov Yurii M.145ORCID,Kurbako Alexander V.125,Karavaev Anatoly S.145

Affiliation:

1. Center for Neurotechnology and Artificial Intelligence, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia

2. Saratov Branch of Kotelnikov Institute of Radio Engineering and Electronics of Russian Academy of Sciences, 410019 Saratov, Russia

3. National Medical Research Center for Therapy and Preventive Medicine, 101990 Moscow, Russia

4. Institute of Cardiology, Saratov State Medical University, 410012 Saratov, Russia

5. Institute of Physics, Saratov State University, 410028 Saratov, Russia

Abstract

A change in the human psychophysiological state, caused by stress in particular, affects the processes of autonomic control, the activity of which is reflected in infra-slow oscillations of brain potentials with a frequency of less than 0.5 Hz. We studied the infra-slow oscillations in scalp electroencephalogram (EEG) signals in the frequency ranges of 0.05–0.15 Hz and 0.15–0.50 Hz that are associated with the processes of sympathetic and parasympathetic control, respectively, in healthy subjects at rest and during stress-inducing cognitive tasks. The power spectra of EEG signals, the phase coherence coefficients, and indices of directional coupling between the infra-slow oscillations in the signals of different EEG leads were analyzed. We revealed that, compared with the state of rest, the stress state is characterized by a significant decrease in the power of infra-slow oscillations and changes in the structure of couplings between infra-slow oscillations in EEG leads. In particular, under stressful conditions, a decrease in both intrahemispheric and interhemispheric coupling between EEG leads occurred in the range of 0.05–0.15 Hz, while a decrease in intrahemispheric and an increase in interhemispheric couplings was observed in the range of 0.15–0.50 Hz.

Funder

Russian Federal Academic Leadership Program Priority 2030 at the Immanuel Kant Baltic Federal University

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

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