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

机译:各种警惕态中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指数和三阶累积措施来调查不同睡眠阶段的成人大鼠的海马和皮质睡眠脑电图,以量化和比较安静醒来的警惕状态下获得的脑电图的混沌和非线性行为,缓慢 - 从睡眠,快速的眼球运动(REM)睡觉。 Lyapunov指数计算为表征混沌的脑电图,使用三阶累积剂来测量信号的高斯度的偏差。我们的结果显示了所有EEG状态的正面Lyapunov指数,指示REM和非REM系统的IOW型混乱。此外,REM睡眠EEG在其他警惕状态中展示了在海马和皮质脑电图中最大的Lyapunov指数。我们还确定了非高斯行为的所有警惕国家的非零三阶累积累积。

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