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视交叉上核损伤和眼球摘除后雄性大鼠睡眠-觉醒节律的分析。

Analysis of sleep-wakefulness rhythms in male rats after suprachiasmatic nucleus lesions and ocular enucleation.

作者信息

Ibuka N, Inouye S I, Kawamura H

出版信息

Brain Res. 1977 Feb 11;122(1):33-47. doi: 10.1016/0006-8993(77)90660-6.

Abstract

To determine quantitatively characteristics of sleep-wakefulness rhythms in male albino rats, computer analysis of long term polygraphic records (24 h/day) of cortical EEG activity, neck EMG and EOG taken from 23 rats under 12:12 light-dark schedule was performed. After bilateral suprachiasmatic nucleus (SCN) lesions, the circadian rhythm in sleep-wakefulness was completely eliminated, although no attenuation or even slight enhancement of the ultradian rhythms with 2-4 h pweiodicity was observed. After enucleation of both eyes, the circadian rhythm was free-running with a phase shift in the range from --12 to +22 min/day in 6 rats. A gradual decrease of the spectral value of the circadian rhythm and inverse enhancement of the ultradian rhythms with 4--7 h periodicity (predominantly 6 h in 4 out of 6 rats) were also shown. In the spectral diagram, the appearance of paradoxical sleep (PS) paralleled slow-wave sleep (SWS), in the cases of the circadian rhythm and ultradian rhythms with 4--7 h periodicity. Behaviorally blind rats with bilateral primary optic tract (POT) lesions maintained the circadian rhythm in sleep-wakefulness entrained to the environmental light-dark cycle. Power spectral analysis showed no characteristic difference from normal rats. Based on these data, the role of the SCN as a pacemaker of endogenous circadian rhythm in sleep-wakefulness is discussed.

摘要

为了定量确定雄性白化大鼠睡眠-觉醒节律的特征,对23只处于12:12明暗周期的大鼠的皮质脑电图活动、颈部肌电图和眼电图进行了长期多导记录(每天24小时)的计算机分析。双侧视交叉上核(SCN)损伤后,睡眠-觉醒的昼夜节律完全消失,尽管未观察到2-4小时周期性的超日节律有衰减甚至轻微增强。双眼摘除后,6只大鼠的昼夜节律出现自由运行,相位偏移范围为每天-12至+22分钟。还显示出昼夜节律的频谱值逐渐降低,以及4-7小时周期性(6只大鼠中有4只主要为6小时)的超日节律反向增强。在频谱图中,在昼夜节律和4-7小时周期性的超日节律情况下,快速眼动睡眠(PS)的出现与慢波睡眠(SWS)平行。双侧原发性视束(POT)损伤的行为盲大鼠保持睡眠-觉醒的昼夜节律,并与环境明暗周期同步。功率谱分析显示与正常大鼠无特征性差异。基于这些数据,讨论了SCN作为睡眠-觉醒内源性昼夜节律起搏器的作用。

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