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雌性大鼠发情周期中的睡眠稳态

Sleep homeostasis in the female rat during the estrous cycle.

作者信息

Schwierin B, Borbély A A, Tobler I

机构信息

Institute of Pharmacology, University of Zürich, Winterthurerstrasse 190, CH-8057, Zürich, Switzerland.

出版信息

Brain Res. 1998 Nov 16;811(1-2):96-104. doi: 10.1016/s0006-8993(98)00991-3.

DOI:10.1016/s0006-8993(98)00991-3
PMID:9804908
Abstract

To investigate whether sleep homeostasis in the female rat is modulated by the estrous cycle, the vigilance states, EEG power spectra and cortical temperature (TCRT) were assessed on the basis of 4-day continuous recordings. A regulatory response was elicited by 6-h sleep deprivation (SD) during the proestrous (PRO) and the estrous (EST) day and compared to the baseline recordings. The vigilance states varied across the estrous cycle. In the PRO dark period the amount of sleep was reduced. The decrease in rapid-eye-movement (REM) sleep was already evident towards the end of the preceding light period, and an increased fragmentation of sleep was present throughout PRO. Compared to the other days of the estrous cycle, slow-wave activity (SWA; EEG power density 0.75-4.75 Hz) in nonREM (NREM) sleep was lower in PRO at the end of the light period and in the beginning of the dark period. High-frequency activity (HFA; EEG power density 10.25-25.0 Hz) was increased in the dark period of PRO. The SD performed during the first 6 h of the light period of PRO and EST enhanced SWA in NREM sleep and reduced sleep fragmentation during the subsequent 6 h. The extent and time course of the response to SD did not differ between the two phases of the estrous cycle. It is concluded that despite the marked baseline variations of the vigilance states and the EEG, homeostatic regulation is little affected by the estrous cycle.

摘要

为研究雌性大鼠的睡眠稳态是否受发情周期调节,基于4天的连续记录评估了警觉状态、脑电图功率谱和皮质温度(TCRT)。在动情前期(PRO)和发情期(EST)的白天进行6小时睡眠剥夺(SD)以引发调节反应,并与基线记录进行比较。警觉状态在发情周期中有所变化。在PRO期的黑暗时段,睡眠量减少。快速眼动(REM)睡眠的减少在前一个光照期结束时就已很明显,并且在整个PRO期睡眠碎片化增加。与发情周期的其他日子相比,非快速眼动(NREM)睡眠中的慢波活动(SWA;脑电图功率密度0.75 - 4.75赫兹)在光照期结束时和黑暗期开始时的PRO期较低。高频活动(HFA;脑电图功率密度10.25 - 25.0赫兹)在PRO期的黑暗时段增加。在PRO期和EST期光照期的前6小时进行的SD增强了NREM睡眠中的SWA,并减少了随后6小时的睡眠碎片化。发情周期两个阶段对SD反应的程度和时间进程没有差异。结论是,尽管警觉状态和脑电图存在明显的基线变化,但稳态调节受发情周期的影响很小。

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