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人类长时间睡眠期间脑电图纺锤波频率活动的动态变化:与慢波活动及一天中时间的关系。

Dynamics of EEG spindle frequency activity during extended sleep in humans: relationship to slow-wave activity and time of day.

作者信息

Aeschbach D, Dijk D J, Borbély A A

机构信息

Institute of Pharmacology, University of Zurich, Switzerland.

出版信息

Brain Res. 1997 Feb 14;748(1-2):131-6. doi: 10.1016/s0006-8993(96)01275-9.

Abstract

The dynamics of EEG spindle frequency activity (SFA; spectral power density in the 12.25-15.0 Hz range) and its relationship to slow-wave activity (SWA; 0.75-4.5 Hz) were investigated in long sleep episodes (> 12 h). Young healthy men went to bed at either 19:00 h (early sleep; prior waking 36 h, n = 9) or 24:00 h (late sleep; prior waking 17 h, n = 8). In both nights, SWA in non-rapid-eye-movement sleep (NREMS) decreased over the first three to four 1.5-h intervals and remained at a low level in the subsequent five to six 1.5-h intervals. In contrast, the changes of SFA were more variable and differed between the lower (12.25-13.0 Hz), middle (13.25-14.0 Hz) and higher frequency bin (14.25-15.0 Hz). A pronounced influence of time of day was present in the lower and higher SFA bin, when the dynamics were analyzed with respect to clock time. In both the early and late sleep condition, power density in the lower bin was highest between 2:00 and 5:00 h in the morning and decreased thereafter. In the higher bin, power density was low in the early morning hours and increased as sleep was extended into the daytime hours. The results provide further evidence for a frequency-specific circadian modulation of SFA which becomes more evident at a time when SWA is low.

摘要

我们在长睡眠时段(>12小时)研究了脑电图纺锤波频率活动(SFA;12.25 - 15.0赫兹范围内的频谱功率密度)的动态变化及其与慢波活动(SWA;0.75 - 4.5赫兹)的关系。年轻健康男性分别于19:00上床睡觉(早睡;睡前清醒36小时,n = 9)或24:00上床睡觉(晚睡;睡前清醒17小时,n = 8)。在这两个晚上,非快速眼动睡眠(NREMS)中的SWA在前三个至四个1.5小时时段内下降,并在随后的五个至六个1.5小时时段内保持在低水平。相比之下,SFA的变化更具变异性,且在较低频率区间(12.25 - 13.0赫兹)、中间频率区间(13.25 - 14.0赫兹)和较高频率区间(14.25 - 15.0赫兹)有所不同。当根据时钟时间分析动态变化时,一天中的时间对较低和较高SFA区间有显著影响。在早睡和晚睡两种情况下,较低频率区间的功率密度在凌晨2:00至5:00之间最高,此后下降。在较高频率区间,凌晨时分功率密度较低,随着睡眠延伸至白天时段而增加。这些结果为SFA的频率特异性昼夜节律调节提供了进一步证据,这种调节在SWA较低时变得更加明显。

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