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睡眠与觉醒的神经生理机制:一个平衡的问题。

Neurophysiological mechanisms of sleep and wakefulness: a question of balance.

作者信息

Sinton Christopher M, McCarley Robert W

机构信息

Department of Psychiatry, Harvard Medical School, Brockton VA Medical Center, Brockton, Massachusetts, USA.

出版信息

Semin Neurol. 2004 Sep;24(3):211-23. doi: 10.1055/s-2004-835067.

Abstract

Following a summary of the stages of sleep and wakefulness as monitored with the electroencephalogram and electromyogram, important aspects of the neurophysiology and neuroanatomy of the circuits of vigilance state control are reviewed. A homeostatic drive for sleep and a circadian influence work in concert to determine sleepiness. These processes influence sleep-promoting and central arousing neuronal systems, the former dependent on a group of neurons in the hypothalamic ventrolateral preoptic area and the latter governed by neurons in the pons and basal forebrain. The interactive neuronal circuit that is formed by these cell groups ensures the balance between sleep and wakefulness and the rapid transition to and from sleep. As sleep deepens, the switch to rapid eye movement (REM) sleep occurs. This transition can also be viewed as a balance between one group of pontine neurons that discharge only during REM sleep and another group that cease to discharge during REM sleep. This article concludes with future perspectives based on the recent discovery of the orexin cell group. Orexinergic neurons may be critical both for promoting wakefulness at certain times in the daily cycle and for controlling the switch into REM sleep.

摘要

在总结通过脑电图和肌电图监测到的睡眠和觉醒阶段后,本文回顾了警觉状态控制回路的神经生理学和神经解剖学的重要方面。睡眠的稳态驱动力和昼夜节律共同作用以决定困倦程度。这些过程影响促进睡眠和中枢唤醒的神经元系统,前者依赖于下丘脑腹外侧视前区的一组神经元,后者受脑桥和基底前脑的神经元支配。由这些细胞群形成的交互式神经元回路确保了睡眠和觉醒之间的平衡以及向睡眠和从睡眠中快速转换。随着睡眠加深,会进入快速眼动(REM)睡眠。这种转换也可以看作是一组仅在REM睡眠期间放电的脑桥神经元与另一组在REM睡眠期间停止放电的神经元之间的平衡。本文基于最近对食欲素细胞群的发现给出了未来展望。食欲素能神经元可能对于在每日周期的特定时间促进觉醒以及控制进入REM睡眠的转换都至关重要。

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