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体温与睡眠。

Body temperature and sleep.

作者信息

Szymusiak Ronald

机构信息

Research Service, VA Greater Los Angeles Healthcare System and Department of Medicine and Neurobiology, David Geffen School of Medicine, University of California, Los Angeles, CA, United States.

出版信息

Handb Clin Neurol. 2018;156:341-351. doi: 10.1016/B978-0-444-63912-7.00020-5.

Abstract

Sleep in mammals is accompanied by a decrease in core body temperature (CBT). The circadian clock in the hypothalamic suprachiasmatic nucleus regulates daily rhythms in both CBT and arousal states, and these rhythms are normally coupled. Reductions in metabolic heat production resulting from behavioral quiescence and reduced muscle tone along with changes in autonomic nervous system activity and thermoeffector activity contribute to the sleep-related fall in CBT. Reductions in sympathetic tone to the peripheral vasculature resulting in heat loss through the skin are reflected in a sleep-related increase in distal skin temperature that is a prominent feature of sleep onset in humans. Within a sleep episode, patterns of autonomic nervous system and thermoeffector activity and the ability to defend against heat and cold exposure differ during nonrapid eye movement (NREM) and rapid eye movement sleep. Anatomic and functional integration of the control of arousal states and thermoregulation occur in the preoptic/anterior hypothalamus. Subsets or warm-sensing neurons in the preoptic/anterior hypothalamus implicated in CBT regulation are spontaneously activated during sleep onset and NREM sleep compared to waking and may underlie sleep-related changes in autonomic nervous system and thermoeffector activity.

摘要

哺乳动物睡眠时,核心体温(CBT)会下降。下丘脑视交叉上核中的生物钟调节着CBT和觉醒状态的每日节律,且这些节律通常是相互关联的。行为静止和肌肉张力降低导致代谢产热减少,以及自主神经系统活动和体温调节效应器活动的变化,共同促成了与睡眠相关的CBT下降。交感神经对外周血管系统的张力降低,导致热量通过皮肤散失,这反映在与睡眠相关的远端皮肤温度升高上,这是人类睡眠开始时的一个显著特征。在一个睡眠周期内,非快速眼动(NREM)睡眠和快速眼动睡眠期间,自主神经系统和体温调节效应器活动的模式以及抵御热暴露和冷暴露的能力有所不同。觉醒状态控制和体温调节的解剖学和功能整合发生在视前区/下丘脑前部。与清醒状态相比,视前区/下丘脑前部中与CBT调节有关的一部分温敏神经元在睡眠开始和NREM睡眠期间会自发激活,这可能是自主神经系统和体温调节效应器活动与睡眠相关变化的基础。

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