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[狒狒视神经切断对视脑电图活动及睡眠-觉醒周期的影响]

[Effects of optic nerve section in baboons on the EEG activity and sleep-waking cycles].

作者信息

Vuillon-Cacciuttolo G, Seri B

出版信息

Electroencephalogr Clin Neurophysiol. 1978 Jun;44(6):769-77. doi: 10.1016/0013-4694(78)90211-0.

Abstract

EEG rhythms recorded during the various states of alertness and sleep--waking cycles were studied in 4 baboons before and after optic nerve section. Visual deafferentation induced a general increase in amplitude of all the cortical rhythms, with general accentuation of pre-existing activities such as occipital eye movement potentials (EMPs), the fronto-rolandic rhythm and the alpha rhythm, spindles, REM ponto-geniculo-cortical (PGC) spikes; an increase in amplitude of the geniculate rhythmic activity, its frequency and occurrence was also noticed. When the blind baboons were placed in a monotonous environment, sleep--waking cycles occurred at any time of the 24 h. Total sleep time and total REM duration were not changed; however, deep sleep (stages 3 and 4) duration decreased (by around 50%) whereas stages 1 and 2 increased. The light factor thus plays a role in the sleep--waking cycle organization. However, its influence does to seem to be essential since its loss can be compensated by auditory stimulation. Finally, light possibly influences the systems involved in slow wave sleep regulation.

摘要

在4只狒狒视神经切断术前和术后,研究了在各种警觉状态和睡眠-觉醒周期中记录的脑电图节律。视觉传入神经切断导致所有皮质节律的振幅普遍增加,同时使诸如枕眼动电位(EMPs)、额-罗兰节律和α节律、纺锤波、快速眼动期脑桥-膝状体-皮质(PGC)尖峰等先前存在的活动普遍增强;还观察到膝状体节律性活动的振幅、频率和发生率增加。当失明的狒狒置于单调环境中时,24小时内任何时间都会出现睡眠-觉醒周期。总睡眠时间和总快速眼动持续时间未改变;然而,深度睡眠(3期和4期)持续时间减少(约50%),而1期和2期增加。因此,光照因素在睡眠-觉醒周期的组织中起作用。然而,其影响似乎并非必不可少,因为其缺失可通过听觉刺激得到补偿。最后,光照可能影响参与慢波睡眠调节的系统。

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