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Selective REM sleep deprivation during daytime. II. Muscle atonia in non-REM sleep

机译:白天选择性REM睡眠剥夺。二。非快速眼动睡眠中的肌无力

摘要

One of the hallmarks of rapid eye movement (REM) sleep is muscle atonia. Here we report extended epochs of muscle atonia in non-REM sleep (MAN). Their extent and time course was studied in a protocol that included a baseline night, a daytime sleep episode with or without selective REM sleep deprivation, and a recovery night. The distribution of the latency to the first occurrence of MAN was bimodal with a first mode shortly after sleep onset and a second mode 40 min later. Within a non-REM sleep episode, MAN showed a U-shaped distribution with the highest values before and after REM sleep. Whereas MAN was at a constant level over consecutive 2-h intervals of nighttime sleep, MAN showed high initial values when sleep began in the morning. Selective daytime REM sleep deprivation caused an initial enhancement of MAN during recovery sleep. It is concluded that episodes of MAN may represent an REM sleep equivalent and that it may be a marker of homeostatic and circadian REM sleep regulating processes. MAN episodes may contribute to the compensation of an REM sleep deficit.
机译:快速眼动(REM)睡眠的标志之一是肌肉萎缩。在这里,我们报告了非快速眼动睡眠(MAN)中肌肉肌张力的延长时期。在协议中研究了他们的程度和时程,包括基线夜,白天睡眠发作(有或没有选择性REM睡眠剥夺)以及恢复之夜。首次出现MAN的潜伏期分布是双峰的,睡眠后不久即出现第一模态,而40分钟后呈第二模态。在非快速眼动睡眠发作中,MAN在快速眼动睡眠之前和之后均呈U形分布,并具有最高值。在连续2小时的夜间睡眠中,MAN处于恒定水平,而早晨开始睡眠时,MAN显示出较高的初始值。选择性的白天REM睡眠剥夺导致恢复睡眠期间MAN的初始增强。结论是MAN发作可能代表了等效的REM睡眠,并且可能是稳态和昼夜REM睡眠调节过程的标志。 MAN发作可能有助于补偿REM睡眠不足。

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