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Contribution of the circadian pacemaker and the sleep homeostat to sleep propensity sleep structure electroencephalographic slow waves and sleep spindle activity in humans

机译:昼夜节律起搏器和睡眠稳压器对人类睡眠倾向睡眠结构脑电图慢波和睡眠纺锤体活动的贡献

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摘要

The role of the endogenous circadian pacemaker in the timing of the sleep-wake cycle and the regulation of the internal structure of sleep, including REM sleep, EEG slow-wave (0.75–4.5 Hz) and sleep spindle activity (12.75–15.0 Hz) was investigated. Eight men lived in an environment free of time cues for 33–36 d and were scheduled to a 28 hr rest-activity cycle so that sleep episodes (9.33 hr each) occurred at all phases of the endogenous circadian cycle and variations in wakefulness preceding sleep were minimized. The crest of the robust circadian rhythm of REM sleep, which was observed throughout the sleep episode, was positioned shortly after the minimum of the core body temperature rhythm. Furthermore, a sleep-dependent increase of REM sleep was present, which, interacting with the circadian modulation, resulted in highest values of REM sleep when the end of scheduled sleep episodes coincided with habitual wake-time. Slow-wave activity decreased and sleep spindle activity increased in the course of all sleep episodes. Slow-wave activity in non-REM sleep exhibited a low amplitude circadian modulation which did not parallel the circadian rhythm of sleep propensity. Sleep spindle activity showed a marked endogenous circadian rhythm; its crest coincident with the beginning of the habitual sleep episode. Analyses of the (nonadditive) interaction of the circadian and sleep-dependent components of sleep propensity and sleep structure revealed that the phase relation between the sleep-wake cycle and the circadian pacemaker during entrainment promotes the consolidation of sleep and wakefulness and facilitates the transitions between these vigilance states.
机译:内源性昼夜节律起搏器在睡眠-觉醒周期的时间安排和睡眠内部结构的调节中的作用,包括REM睡眠,EEG慢波(0.75-4.5 Hz)和睡眠纺锤活动(12.75-15.0 Hz)被调查了。八名男子在无时间提示的环境中生活了33-36 d,并计划进行28小时的休息-活动周期,以使内源性昼夜节律周期的各个阶段都发生睡眠发作(每个9.33 hr),并且在入睡前觉醒有所变化。被最小化。在整个睡眠过程中都观察到的REM睡眠的强劲昼夜节律的波峰位于核心体温节律的最小值之后不久。此外,存在与睡眠有关的快速眼动睡眠增加,这与昼夜节律调节相互作用,当计划的睡眠发作结束与习惯性唤醒时间一致时,导致快速眼动睡眠最高值。在所有睡眠发作的过程中,慢波活动减少,睡眠纺锤活动增加。非快速眼动睡眠中的慢波活动表现出低幅度的昼夜节律调制,这与睡眠倾向的昼夜节律不匹配。睡眠纺锤体活动显示出明显的内源性昼夜节律;它的波峰与习惯性睡眠发作的开始相吻合。对昼夜节律和依赖于睡眠的睡眠倾向和睡眠结构的成分的(非加性)相互作用的分析表明,在训练过程中,觉醒周期与昼夜节律起搏器之间的相位关系促进了睡眠和清醒的巩固,并促进了两者之间的过渡。这些警惕状态。

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