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睡眠和清醒状态下的功能性脑电图地形图:状态依赖和状态独立特征

Functional EEG topography in sleep and waking: state-dependent and state-independent features.

作者信息

Tinguely Gilberte, Finelli Luca A, Landolt Hans-Peter, Borbély Alexander A, Achermann Peter

机构信息

Section of Psychopharmacology and Sleep Research, Institute of Pharmacology and Toxicology, University of Zurich, Winterthurerstrasse 190, CH-8057 Zurich, Switzerland.

出版信息

Neuroimage. 2006 Aug 1;32(1):283-92. doi: 10.1016/j.neuroimage.2006.03.017. Epub 2006 May 2.

Abstract

Power spectra in the non-rapid eye movement sleep (NREMS) electroencephalogram (EEG) have been shown to exhibit frequency-specific topographic features that may point to functional differences in brain regions. Here, we extend the analysis to rapid eye movement sleep (REMS) and waking (W) to determine the extent to which EEG topography is determined by state under two different levels of sleep pressure. Multichannel EEG recordings were obtained from young men during a baseline night, a 40-h waking period, and a recovery night. Sleep deprivation enhanced EEG power in the low-frequency range (1-8 Hz) in all three vigilance states. In NREMS, the effect was largest in the delta band, in W, in the theta band, while in REMS, there was a peak in both the delta and the theta band. The response of REMS to prolonged waking and its pattern of EEG topography was intermediate between NREMS and W. Cluster analysis revealed a major topographic segregation into three frequency bands (1-8 Hz, 9-15 Hz, 16-24 Hz), which was largely independent of state and sleep pressure. To assess individual topographic traits within each state, the differences between pairs of power maps were compared within (i.e., for baseline and recovery) and between individuals (i.e., separately for baseline and recovery). A high degree of intraindividual correspondence of the power maps was observed. The frequency-specific clustering of power maps suggests that distinct generators underlie EEG frequency bands. Although EEG power is modulated by state and sleep pressure, basic topographic features appear to be state-independent.

摘要

非快速眼动睡眠(NREMS)脑电图(EEG)中的功率谱已被证明呈现出频率特异性的地形特征,这可能指向脑区的功能差异。在此,我们将分析扩展到快速眼动睡眠(REMS)和清醒(W)状态,以确定在两种不同睡眠压力水平下,EEG地形在多大程度上由睡眠状态决定。在一个基线夜晚、一个40小时清醒期和一个恢复夜晚期间,从年轻男性身上获取多通道EEG记录。睡眠剥夺增强了所有三种警觉状态下低频范围(1 - 8Hz)的EEG功率。在NREMS中,这种效应在δ频段最大,在W状态下,在θ频段最大,而在REMS中,δ和θ频段均出现峰值。REMS对长时间清醒的反应及其EEG地形模式介于NREMS和W之间。聚类分析揭示了主要的地形分离为三个频段(1 - 8Hz、9 - 15Hz、16 - 24Hz),这在很大程度上与睡眠状态和睡眠压力无关。为了评估每种状态下的个体地形特征,在个体内部(即基线和恢复阶段)以及个体之间(即分别针对基线和恢复阶段)比较功率图对之间的差异。观察到功率图在个体内部具有高度的一致性。功率图的频率特异性聚类表明不同的发生器是EEG频段的基础。尽管EEG功率受睡眠状态和睡眠压力调节,但基本的地形特征似乎与睡眠状态无关。

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