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Chaotic Analysis of Hippocampal and Cortical Sleep EEG during Various Vigilance States

机译:各种警惕状态下海马和皮质睡眠脑电图的混沌分析

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In this paper, we investigate the hippocampal and cortical sleep EEG of adult rats at different sleep stages by employing Lyapunov exponent and third-order cumulant measures to quantify and compare the chaotic and nonlinear behavior of EEG obtained during vigilance states of quiet- waking, slow-wave sleep, and rapid eye movement (REM) sleep. Lyapunov exponent was computed to characterize the EEG for chaos and third-order cumulant was used to measure the deviations from Gaussianity of the signal. Our results show positive Lyapunov exponents for all EEG states indicating a Iow- dimensional chaos for both REM and non-REM system. Furthermore, REM sleep EEG exhibits the largest Lyapunov exponent in both hippocampal and cortical EEG amongst other vigilance states. We also identified non-zero third-order cumulant for all the vigilance states which suggests their non- Gaussian behavior.
机译:在本文中,我们通过使用Lyapunov指数和三阶累积量度指标来量化和比较在安静,清醒,缓慢的警惕状态下获得的脑电图的混沌和非线性行为,从而研究成年大鼠在不同睡眠阶段的海马和皮层睡眠脑电图。波睡眠和快速眼动(REM)睡眠。计算李雅普诺夫指数以表征混沌的脑电图,并使用三阶累积量来测量信号与高斯性的偏差。我们的结果表明,对于所有EEG状态,Lyapunov指数均为正,表明REM和非REM系统都存在低维混沌。此外,在其他警惕状态中,REM睡眠脑电图在海马和皮层脑电图中均表现出最大的Lyapunov指数。我们还为所有警戒状态确定了非零的三阶累积量,这表明了它们的非高斯行为。

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