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[青蛙离体迷路中感觉活动的抑制与传出易化作用]

[Inhibition and efferent facilitation of sensory activity in the isolated labyrinth of the frog].

作者信息

Rossi M L, Martini M

机构信息

Istituto di Fisiologia Generale dell'Università di Ferrara.

出版信息

Boll Soc Ital Biol Sper. 1990 Oct;66(10):1009-14.

PMID:2096874
Abstract

The functioning modalities of the efferent system were analysed in the isolated frog labyrinth. The efferent synapses of the posterior canal were activated via an axon reflex by antidromic electrical shocks (10-200 Hz) applied for increasing times (250 ms-10 s) to the anterior-horizontal nerves. Either decrease (inhibition) or increase (facilitation) in the resting discharge rate were observed in the majority of the units examined. Inhibition and facilitation, however, are peculiar to any given unit since inhibition does not reverse to facilitation or vice-versa. This fact as well as the long response latency (not less than 10 ms) and the linear dependence of both effects on the stimulation frequency suggest that inhibition and facilitation are due to the repetitive activation of two different types of efferent fibres synapsing on the hair cells. The drastic modifications in the afferent synaptic discharge produced by full activation of the efferent system indicate that the static properties (response asymmetry) as well as the dynamic properties (response adaptation) of the mechanically driven afferent response can be substantially controlled by the central nervous system at the receptor level.

摘要

在离体青蛙迷路中分析了传出系统的功能模式。通过对水平前神经施加递增时间(250毫秒至10秒)的反行电刺激(10 - 200赫兹),经由轴突反射激活后半规管的传出突触。在所检查的大多数单位中,观察到静息放电率降低(抑制)或增加(易化)。然而,抑制和易化对于任何给定单位来说都是独特的,因为抑制不会转变为易化,反之亦然。这一事实以及较长的反应潜伏期(不少于10毫秒)和两种效应对刺激频率的线性依赖性表明,抑制和易化是由于两种不同类型的传出纤维在毛细胞上突触的重复激活所致。传出系统完全激活所产生的传入突触放电的剧烈改变表明,机械驱动的传入反应的静态特性(反应不对称性)以及动态特性(反应适应性)在受体水平上可受到中枢神经系统的实质性控制。

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