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人类睡眠脑电图对选择性慢波睡眠剥夺的区域差异。

Regional differences of the human sleep electroencephalogram in response to selective slow-wave sleep deprivation.

作者信息

Ferrara Michele, De Gennaro Luigi, Curcio Giuseppe, Cristiani Riccardo, Corvasce Chiara, Bertini Mario

机构信息

Department of Psychology, University of Rome La Sapienza, 00185 Rome, Italy.

出版信息

Cereb Cortex. 2002 Jul;12(7):737-48. doi: 10.1093/cercor/12.7.737.

Abstract

The purpose of this study was to assess the topographic changes in sleep recuperative processes in response to selective slow-wave sleep (SWS) deprivation. SWS was suppressed on two consecutive nights by means of acoustic stimulation. The electroencephalogram (EEG) power of baseline, deprivation and recovery nights was analysed in 1 Hz bins. During the SWS deprivation nights, large decreases of EEG power were found at frontopolar, central and parietal derivations encompassing the delta, theta and alpha range, while only slow delta (0.5-2 Hz) was affected at the frontal derivation. Recovery sleep was characterized by a generalized increase of power during non-REM sleep encompassing the delta, theta and alpha bands, with a clear antero-posterior gradient. The coherent behaviour of different EEG bands with traditionally different electrophysiological meanings during non-REM sleep suggests that, in light of the recent advances in sleep neurophysiology, a re-examination of the functional role of EEG rhythms during sleep is needed. The 'resistance' to selective SWS deprivation of the frontal area, together with its larger increase of EEG power during recovery, may be interpreted as a sign of a greater sleep need of the frontal cortical areas, confirming that some aspects of the regulatory processes of human sleep are local in nature and may show use-dependent characteristics.

摘要

本研究的目的是评估选择性慢波睡眠(SWS)剥夺后睡眠恢复过程中的地形变化。通过声音刺激连续两晚抑制SWS。以1赫兹频段分析基线、剥夺和恢复夜晚的脑电图(EEG)功率。在SWS剥夺夜晚,额极、中央和顶叶导联在δ、θ和α频段的EEG功率大幅下降,而额叶导联仅慢δ(0.5 - 2赫兹)受到影响。恢复睡眠的特征是在非快速眼动睡眠期间,δ、θ和α频段的功率普遍增加,呈现明显的前后梯度。在非快速眼动睡眠期间,具有传统不同电生理意义的不同EEG频段的相干行为表明,鉴于睡眠神经生理学的最新进展,需要重新审视睡眠期间EEG节律的功能作用。额叶区域对选择性SWS剥夺的“抵抗力”,以及其在恢复期间EEG功率的更大增加,可能被解释为额叶皮质区域有更大睡眠需求的迹象,证实人类睡眠调节过程的某些方面本质上是局部的,可能表现出使用依赖特征。

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