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Sleep homeostasis and the circadian clock: Do the circadian pacemaker and the sleep homeostat influence each other’s functioning?

机译:睡眠稳态和昼夜钟表:昼夜昼夜节目起搏器和睡眠稳定地影响彼此的功能吗?

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摘要

Sleep is regulated by a homeostatic and a circadian process. Together these two processes determine most aspects of sleep and related variables like sleepiness and alertness. The two processes are known to be able to work independently, but also to both influence sleep and sleep related variables in an additive or more complex manner. The question remains whether the two processes are directly influencing each other.The present review summarizes evidence from behavioural and electroencephalographic determined sleep, electrophysiology, gene knock out mouse models, and mathematical modelling to explore whether sleep homeostasis can influence circadian clock functioning and vice versa.There is a multitude of data available showing parallel action or influence of sleep homeostatic mechanisms and the circadian clock on several objective and subjective variables related to sleep and alertness. However, the evidence of a direct influence of the circadian clock on sleep homeostatic mechanisms is sparse and more research is needed, particularly applying longer sleep deprivations that include a second night.The strongest evidence of an influence of sleep homeostatic mechanisms on clock functioning comes from sleep deprivation experiments, demonstrating an attenuation of phase shifts of the circadian rhythm to light pulses when sleep homeostatic pressure is increased. The data suggest that the circadian clock is less susceptible to light when sleep pressure is high.The available data indicate that a strong central clock will induce periods of deep sleep, which in turn will strengthen clock function. Both are therefore important for health and wellbeing. Weakening of one will also hamper functioning of the other. Shift work and jet lag are situations where one tries to adapt to zeitgebers in a condition where sleep is compromised. Adaptation to zeitgebers may be improved by introducing nap schedules to reduce sleep pressure, and through that increasing clock susceptibility to light. Keywords: Circadian clock, Sleep homeostasis, Sleep deprivation, Phase shift, Adenosine
机译:睡眠是由体内平衡和生理过程监管。这两个过程共同决定睡眠的许多方面都像嗜睡和警觉性有关的变量。这两个过程被称为是能够独立工作,也都影响睡眠和睡眠相关的变量添加剂或更复杂的方式。现在的问题是是否这两个过程都直接影响每个other.The本次审查中总结了行为和脑电图决定的睡眠,电生理,基因证据敲除小鼠模型,和数学模型,探讨睡眠稳态是否会影响生物钟发挥作用,反之亦然。有证据显示平行动作或睡眠自我平衡机制的影响以及对有关睡眠和警觉一些客观和主观变量生物钟可用数据的大量。然而,对睡眠自我平衡机制的生物钟有直接影响的证据不多且需要更多的研究,特别是运用更长的睡眠剥夺,其中包括的睡眠自我平衡机制的影响,第二night.The有力的证据上的时钟功能来自睡眠剥夺试验中,证明了昼夜节律至光脉冲的相移的衰减时的睡眠自我平衡的压力增加。数据表明,昼夜节律钟是不易受光时的睡眠压力high.The现有数据表明,一个强大的中央时钟将引起深睡眠,这反过来将加强时钟功能的周期。两者都是因此对于健康和福祉的重要。一个弱化也将阻碍其他的功能。轮班工作和时差是其中一个试图适应zeitgebers在睡眠受到损害的条件的情况。适应zeitgebers可通过引入绒毛调度以减少睡眠压力被提高,并且通过提高时钟易感性的光。关键词:生物钟,睡眠平衡,睡眠剥夺,移相,腺苷

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    Tom Deboer;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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