Left-right information flow in the brain during EEG arousals


Autoria(s): Swarnkar, V.; Abeyratne, Udantha R.; Karunajeewa, A. S.
Contribuinte(s)

A. Dhawan

Data(s)

01/01/2006

Resumo

In disorders such as sleep apnea, sleep is fragmented with frequent EEG-arousal (EEGA) as determined via changes in the sleep-electroencephalogram. EEGA is a poorly understood, complicated phenomenon which is critically important in studying the mysteries of sleep. In this paper we study the information flow between the left and right hemispheres of the brain during the EEGA as manifested through inter-hemispheric asynchrony (IHA) of the surface EEG. EEG data (using electrodes A1/C4 and A2/C3 of international 10-20 system) was collected from 5 subjects undergoing routine polysomnography (PSG). Spectral correlation coefficient (R) was computed between EEG data from two hemispheres for delta-delta(0.5-4 Hz), theta-thetas(4.1-8 Hz), alpha-alpha(8.1-12 Hz) & beta-beta(12.1-25 Hz) frequency bands, during EEGA events. EEGA were graded in 3 levels as (i) micro arousals (3-6 s), (ii) short arousals (6.1-10 s), & (iii) long arousals (10.1-15 s). Our results revealed that in beta band, IHA increases above the baseline after the onset of EEGA and returns to the baseline after the conclusion of event. Results indicated that the duration of EEGA events has a direct influence on the onset of IHA. The latency (L) between the onset of arousals and IHA were found to be L=2plusmn0.5 s (for micro arousals), 4plusmn2.2 s (short arousals) and 6.5plusmn3.6 s (long arousals)

Identificador

http://espace.library.uq.edu.au/view/UQ:104295

Idioma(s)

eng

Publicador

IEEE

Palavras-Chave #Electroencephalographic arousals #Inter-hemispheric asynchrony #Spectral correlation #E1 #291500 Biomedical Engineering #730305 Diagnostic methods #671201 Integrated circuits and devices #0903 Biomedical Engineering
Tipo

Conference Paper