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加利西亚蜥蜴(Gallotia galloti)脑电图的非线性、分形和频谱分析

Nonlinear, fractal, and spectral analysis of the EEG of lizard, Gallotia galloti.

作者信息

González J, Gamundi A, Rial R, Nicolau M C, de Vera L, Pereda E

机构信息

Laboratorio de Biofísica, Departamento de Fisiología, Facultad de Medicina, Universidad de La Laguna, 38320 Tenerife, Spain.

出版信息

Am J Physiol. 1999 Jul;277(1):R86-93. doi: 10.1152/ajpregu.1999.277.1.R86.

Abstract

Electroencephalogram (EEG) from dorsal cortex of lizard Gallotia galloti was analyzed at different temperatures to test the presence of fractal or nonlinear structure during open (OE) and closed eyes (CE), with the aim of comparing these results with those reported for human slow-wave sleep (SWS). Two nonlinear parameters characterizing EEG complexity [correlation dimension (D2)] and predictability [largest Lyapunov exponent (lambda(1))] were calculated, and EEG spectrum and fractal exponent beta were determined via coarse graining spectral analysis. At 25 degrees C, evidence of nonlinear structure was obtained by the surrogate data test, with EEG phase space structure suggesting the presence of deterministic chaos (D2 approximately 6, lambda(1) approximately 1. 5). Both nonlinear parameters were greater in OE than in CE and for the right hemisphere in both situations. At 35 degrees C the evidence of nonlinearity was not conclusive and differences between states disappeared, whereas interhemispheric differences remained for lambda(1). Harmonic power always increased with temperature within the band 8-30 Hz, but only with OE within the band 0.3-7.5 Hz. Qualitative similarities found between lizard and human SWS EEG support the hypothesis that reptilian waking could evolve into mammalian SWS.

摘要

为了测试睁眼(OE)和闭眼(CE)状态下分形或非线性结构的存在情况,并将这些结果与人类慢波睡眠(SWS)的相关结果进行比较,研究人员在不同温度下对加那利蜥蜴(Gallotia galloti)背侧皮质的脑电图(EEG)进行了分析。计算了两个表征EEG复杂性的非线性参数[关联维数(D2)]和可预测性[最大李雅普诺夫指数(lambda(1))],并通过粗粒化频谱分析确定了EEG频谱和分形指数β。在25摄氏度时,通过替代数据测试获得了非线性结构的证据,EEG相空间结构表明存在确定性混沌(D2约为6,lambda(1)约为1.5)。在两种情况下,睁眼时的两个非线性参数均大于闭眼时,且在两种情况下右半球的参数更大。在35摄氏度时,非线性证据并不确凿,状态间差异消失,而lambda(1)的半球间差异仍然存在。在8 - 30赫兹频段内,谐波功率总是随温度升高而增加,但在0.3 - 7.5赫兹频段内,仅睁眼时随温度升高。蜥蜴和人类慢波睡眠EEG之间发现的定性相似性支持了爬行动物清醒状态可能演化为哺乳动物慢波睡眠的假说。

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