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关于非快速眼动睡眠与快速眼动睡眠交替的不对称假说——什么是非快速眼动-快速眼动睡眠周期?

An Asymmetrical Hypothesis for the NREM-REM Sleep Alternation-What Is the NREM-REM Cycle?

作者信息

Le Bon Olivier

机构信息

Laboratory of Psychiatric Research (ULB 266), Department of Psychiatry, Cliniques Universitaires de Bruxelles, Université libre de Bruxelles (ULB), Bruxelles, Belgium.

出版信息

Front Neurosci. 2021 Apr 8;15:627193. doi: 10.3389/fnins.2021.627193. eCollection 2021.

Abstract

Since the discovery of rapid eye movement (REM) sleep (Aserinsky and Kleitman, 1953), sleep has been described as a succession of cycles of non-REM (NREM) and REM sleep episodes. The hypothesis of short-term REM sleep homeostasis, which is currently the basis of most credible theories on sleep regulation, is built upon a positive correlation between the duration of a REM sleep episode and the duration of the interval until the next REM sleep episode (inter-REM interval): the duration of REM sleep would therefore predict the duration of this interval. However, the high variability of inter-REM intervals, especially in polyphasic sleep, argues against a simple oscillator model. A new "asymmetrical" hypothesis is presented here, where REM sleep episodes only determine the duration of a proportional post-REM refractory period (PRRP), during which REM sleep is forbidden and the only remaining options are isolated NREM episodes or waking. After the PRRP, all three options are available again (NREM, REM, and Wake). I will explain why I think this hypothesis also calls into question the notion of NREM-REM sleep cycles.

摘要

自从快速眼动(REM)睡眠被发现以来(阿塞林斯基和克莱特曼,1953年),睡眠就被描述为非快速眼动(NREM)和快速眼动睡眠阶段的一系列循环。短期快速眼动睡眠稳态假说目前是大多数关于睡眠调节的可靠理论的基础,该假说基于快速眼动睡眠阶段的持续时间与直至下一个快速眼动睡眠阶段的间隔时间(快速眼动间隔)之间的正相关关系:因此,快速眼动睡眠的持续时间可以预测这个间隔的持续时间。然而,快速眼动间隔的高度变异性,尤其是在多相睡眠中,与简单的振荡器模型相悖。这里提出了一种新的“不对称”假说,即快速眼动睡眠阶段仅决定成比例的快速眼动后不应期(PRRP)的持续时间,在此期间快速眼动睡眠被禁止,剩下的唯一选择是孤立的非快速眼动阶段或清醒状态。在快速眼动后不应期之后,所有三种选择(非快速眼动、快速眼动和清醒)再次可用。我将解释为什么我认为这个假说也对非快速眼动 - 快速眼动睡眠循环的概念提出了质疑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c8c/8060555/2e02b47daea9/fnins-15-627193-g001.jpg

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