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大鼠主动睡眠的短期稳态与睡眠结构

Short-term homeostasis of active sleep and the architecture of sleep in the rat.

作者信息

Vivaldi E A, Ocampo A, Wyneken U, Roncagliolo M, Zapata A M

机构信息

Departamento de Fisiología y Biofísica, Facultad de Medicina, Universidad de Chile, Santiago.

出版信息

J Neurophysiol. 1994 Oct;72(4):1745-55. doi: 10.1152/jn.1994.72.4.1745.

Abstract
  1. Sixteen rats were recorded continuously for 3 days using an automated system that detected, quantified, and stored the incidence of cortical delta waves, cortical sigma spindles, hippocampal theta rhythm, and electromyographic activity. A time series then was constructed wherein 15-s epochs were ascribed to one behavioral state: wakefulness (W), quiet sleep (QS), or active sleep (AS, a state also referred to as REM sleep). From those series, AS episodes and non-AS intervals could be determined. Episodes and intervals were defined as lasting at least two epochs and the one-epoch episodes and intervals were incorporated to the ongoing state. 2. Having established the length of each AS episode and non-AS interval, pairings were made, on the one hand between episodes and their preceding intervals, and on the other, between episodes and the intervals that followed. 3. Highly significant correlations were found between the length of AS episodes and the length of the non-AS intervals that followed. Correlations were also significant when calculated separately versus the amount of QS and of W within the following interval. Correlations improved when they were performed against the log of the interval and when only intervals with a predominance of QS were selected. 4. No significant correlation was found between the length of AS episodes and the length of the preceding non-AS intervals, except for a negative one that was present only when the statistical analysis was performed in the unsmoothed array where the one-epoch episodes and intervals were preserved. 5. These results suggest that there is a short-term homeostasis operating within the spontaneous architecture of sleep in rats. This homeostatic mechanism is not manifested by the regulation of the length of AS episodes. Instead, there is a forward regulatory mechanism that, given the duration of an AS episode, permissively controls the interval that the animal may abstain from AS, and hence the timing of the triggering of a new AS episode.
摘要
  1. 使用一个自动系统对16只大鼠连续记录3天,该系统可检测、量化并存储皮质δ波、皮质σ纺锤波、海马θ节律和肌电活动的发生率。然后构建一个时间序列,其中15秒的时段被归为一种行为状态:清醒(W)、安静睡眠(QS)或活跃睡眠(AS,一种也被称为快速眼动睡眠的状态)。从这些序列中,可以确定AS发作期和非AS间隔期。发作期和间隔期被定义为至少持续两个时段,单一时段的发作期和间隔期被纳入到当前状态。2. 在确定了每个AS发作期和非AS间隔期的长度后,进行了配对,一方面是发作期与其前间隔期之间的配对,另一方面是发作期与随后间隔期之间的配对。3. 发现AS发作期的长度与随后非AS间隔期的长度之间存在高度显著的相关性。当分别与随后间隔期内的QS量和W量进行计算时,相关性也很显著。当针对间隔期的对数进行计算以及仅选择以QS为主的间隔期时,相关性有所改善。4. 除了在未平滑数组中进行统计分析(其中保留了单一时段的发作期和间隔期)时存在的负相关性外,未发现AS发作期的长度与前一个非AS间隔期的长度之间存在显著相关性。5. 这些结果表明,在大鼠睡眠的自发结构中存在一种短期稳态机制。这种稳态机制并非通过调节AS发作期的长度来体现。相反,存在一种正向调节机制,考虑到AS发作期的持续时间,该机制允许控制动物可以不进入AS的间隔期,从而控制新的AS发作期触发的时间。

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