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12小时睡眠剥夺及12小时冷暴露对大鼠睡眠调节和皮层温度的影响。

Effects of 12-h sleep deprivation and of 12-h cold exposure on sleep regulation and cortical temperature in the rat.

作者信息

Franken P, Tobler I, Borbély A A

机构信息

Institute of Pharmacology, University of Zürich, Switzerland.

出版信息

Physiol Behav. 1993 Nov;54(5):885-94. doi: 10.1016/0031-9384(93)90297-s.

Abstract

The predictions of the two-process model of sleep regulation were tested by 12-h sleep deprivation (SDEP) and 12-h cold exposure (cold, 4 degrees C) in the rat, both carried out in the 12-h dark period. The analysis was based on recordings of vigilance states, electroencephalogram (EEG) power spectra (0.25-25.0 Hz), and cortical temperature (Tcrt). During recovery from SDEP, slow-wave activity (SWA; EEG power density in the 0.75-4.0 Hz band) in non-REM sleep was higher and the number of brief awakenings (nBA) lower than in the corresponding baseline period. During recovery from cold, a moderate and delayed increase in SWA was present. During SDEP, Tcrt was above baseline, and in some intervals of recovery below baseline. In those intervals waking was also decreased. During recovery from cold, Tcrt and waking were not affected. It is concluded that 12-h SDEP causes an intensification of sleep, as indicated by the enhanced SWA and the reduced nBA, whereas 12-h cold has only marginal effects. The time course of SWA in both experiments could be accurately predicted by a computer simulation based on the assumption of the two-process model and the parameter values determined in a previous experiment.

摘要

通过在大鼠12小时黑暗期进行12小时睡眠剥夺(SDEP)和12小时冷暴露(4℃低温)来测试睡眠调节双过程模型的预测。分析基于警觉状态记录、脑电图(EEG)功率谱(0.25 - 25.0Hz)以及皮层温度(Tcrt)。在从SDEP恢复期间,非快速眼动睡眠中的慢波活动(SWA;0.75 - 4.0Hz频段的EEG功率密度)高于相应基线期,短暂觉醒次数(nBA)低于基线期。在从低温恢复期间,SWA出现中度且延迟的增加。在SDEP期间,Tcrt高于基线,在恢复的某些时间段低于基线。在这些时间段,清醒状态也降低。在从低温恢复期间,Tcrt和清醒状态未受影响。得出的结论是,12小时SDEP导致睡眠增强,表现为SWA增强和nBA减少,而12小时低温仅有轻微影响。基于双过程模型假设和先前实验确定的参数值进行的计算机模拟能够准确预测两个实验中SWA的时间进程。

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