Dijk D J, Cajochen C, Tobler I, Borbély A A
Institute of Pharmacology, University of Zürich, Switzerland.
Sleep. 1991 Aug;14(4):294-306. doi: 10.1093/sleep/14.4.294.
In eight male subjects the electroencephalogram (EEG) and core body temperature (Tcore) were recorded during long sleep episodes from 0000 to 1,500 hr. EEGs were visually scored and subjected to spectral analysis by fast Fourier transform. Slow-wave sleep [SWS, i.e. stages 3 + 4 of non-rapid eye movement (NREM) sleep and slow wave activity (SWA, mean EEG power density in the range of 0.75-4.5 Hz)] in NREM sleep attained highest values in the first 3 hr of sleep and lowest values in the morning hours when rapid eye movement (REM) sleep was at its maximum. Wakefulness was significantly enhanced in the last 3 hr of the recording period. Occasional NREM episodes containing SWS were observed in the late morning and early afternoon. However, no significant increase in SWS or SWA in the last 3 hr of the sleep episode over any of the preceding 3-hr intervals was present and SWA in this interval was significantly below the values observed at the beginning of sleep. The duration of NREM episodes varied significantly over the sleep episode. Analysis of the dynamics of SWA within NREM episodes revealed that SWA gradually rose during the episode. Consequently, SWA averaged per episode was positively correlated with episode duration. Tcore dropped in the initial part of sleep, rose during the morning hours and reached values in the afternoon that were higher than at the beginning of sleep. Thus the time course of Tcore dissociated from the time course of SWA. This indicates that SWA in NREM sleep is not directly related to the variation in core body temperature.
在8名男性受试者中,于00:00至15:00的长时间睡眠期间记录脑电图(EEG)和核心体温(Tcore)。对脑电图进行视觉评分,并通过快速傅里叶变换进行频谱分析。非快速眼动(NREM)睡眠中的慢波睡眠[SWS,即NREM睡眠的3期和4期以及慢波活动(SWA,脑电图平均功率密度在0.75 - 4.5赫兹范围内)]在睡眠的前3小时达到最高值,而在快速眼动(REM)睡眠达到最大值的早晨时段则降至最低值。在记录期的最后3小时,清醒状态显著增强。在上午晚些时候和下午早些时候观察到偶尔包含SWS的NREM睡眠阶段。然而,在睡眠阶段的最后3小时内,SWS或SWA相较于之前任何3小时间隔均无显著增加,且该间隔内的SWA显著低于睡眠开始时观察到的值。NREM睡眠阶段的持续时间在整个睡眠过程中变化显著。对NREM睡眠阶段内SWA动态变化的分析表明,SWA在该阶段逐渐上升。因此,每个睡眠阶段的平均SWA与睡眠阶段持续时间呈正相关。Tcore在睡眠初期下降,在上午时段上升,并在下午达到高于睡眠开始时的值。因此,Tcore的时间进程与SWA的时间进程分离。这表明NREM睡眠中的SWA与核心体温的变化没有直接关系。