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睡眠-觉醒子系统在猫孤束核区域的单个神经元上的汇聚。

Convergence of sleep-wakefulness subsystems onto single neurons in the region of cat's solitary tract nucleus.

作者信息

Eguchi K, Satoh T

出版信息

Arch Ital Biol. 1980 Dec;118(4):331-45.

PMID:7212912
Abstract

Neurons in the region of cat's solitary tract nucleus were classified into three groups on the basis of their spontaneous discharge rate during slow wave sleep (SS) as compared with wakefulness (W): group I: SS greater than W; group II: SS less than W; and group III: SS divided by W. These three groups were further examined with regard to the modulation of discharge rate i) during motor activity in W, ii) at the transitional phase from SS to paradoxical sleep (PS), iii) during rapid eye movements (REMs) in PS, and iv) following electrical stimulation of the midbrain reticular formation (MRF). During motor activity in W, increase in unit discharge was frequently observed in group II, while group I and III were often associated with suppression. At the transitional phase from SS to PS many neurons showed a reduction in discharge rate. During REMs in PS, about a half of the neurons of each group responded with burst discharge. The responsiveness to electrical stimulation of the MFR was highest for the group I neurons and the lowest for the group III. The inhibitory responses tended to be smaller in magnitude during SS than during W. During PS, both excitatory and inhibitory responses were, in general, markedly diminished. The analysis of the results has suggested that groups I and II neurons may be involved in more multiple functions than group III neurons which have a tendency to maintain steady discharge rate.

摘要

根据猫在慢波睡眠(SS)期间与清醒(W)时的自发放电率,将猫孤束核区域的神经元分为三组:第一组:SS时放电率大于W时;第二组:SS时放电率小于W时;第三组:SS时放电率与W时放电率之比。进一步研究了这三组神经元在以下情况下放电率的调节:i)W时的运动活动期间;ii)从SS过渡到异相睡眠(PS)的过渡阶段;iii)PS期间的快速眼动(REM)期间;iv)中脑网状结构(MRF)电刺激后。在W时的运动活动期间,第二组神经元的单位放电增加经常被观察到,而第一组和第三组通常与放电抑制有关。从SS过渡到PS的过渡阶段,许多神经元的放电率降低。在PS期间的REM期间,每组约一半的神经元以爆发性放电做出反应。第一组神经元对MRF电刺激的反应性最高,第三组最低。SS期间的抑制性反应幅度往往比W期间小。在PS期间,一般来说,兴奋性和抑制性反应都明显减弱。对结果的分析表明,与倾向于维持稳定放电率的第三组神经元相比,第一组和第二组神经元可能参与更多的多种功能。

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