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蝗虫中尖峰局部中间神经元对机械感觉信息的处理

The processing of mechanosensory information by spiking local interneurons in the locust.

作者信息

Burrows M

出版信息

J Neurophysiol. 1985 Sep;54(3):463-78. doi: 10.1152/jn.1985.54.3.463.

Abstract

The responses and receptive fields of a group of spiking local interneurons in the metathoracic ganglion of the locust were defined by making intracellular recordings from them while moving joints of a hindleg and stimulating external mechanoreceptors. Some interneurons respond both to inputs from internal mechanoreceptors (proprioceptors) at particular joints and to inputs from an array of external mechanoreceptors. The effects of both types of receptor can be excitatory or inhibitory. Other interneurons respond to proprioceptive input alone. There is a spectrum of responses. At one extreme are interneurons that respond tonically, the frequency of their spikes being determined by the angle of a particular joint. At the other extreme are interneurons that respond phasically to imposed movements of a joint in any direction. Inbetween are interneurons that respond with either a rapidly or a more slowly adapting change in the frequency of their spikes to the displacement of a joint in only one direction. Each movement of a particular joint excites or inhibits several interneurons with a range of different response characteristics. An interneuron typically receives inputs from only one joint, though some are excited by both femoral and tibial receptors. The interneurons spike during active movements of a leg elicited by direct stimulation of individual motor neurons, and during movements elicited by tactile stimulation of other parts of the body.

摘要

通过在蝗虫后胸神经节中对一组产生尖峰的局部中间神经元进行细胞内记录,同时移动后肢关节并刺激外部机械感受器,确定了这些神经元的反应和感受野。一些中间神经元既对特定关节处内部机械感受器(本体感受器)的输入有反应,也对一系列外部机械感受器的输入有反应。这两种类型感受器的作用都可以是兴奋性的或抑制性的。其他中间神经元仅对本体感受输入有反应。存在一系列的反应。一端是持续反应的中间神经元,其尖峰频率由特定关节的角度决定。另一端是对关节在任何方向上的施加运动进行相位反应的中间神经元。介于两者之间的是那些仅对关节在一个方向上的位移以尖峰频率快速或较慢适应变化做出反应的中间神经元。特定关节的每次运动都会兴奋或抑制几个具有一系列不同反应特征的中间神经元。一个中间神经元通常仅从一个关节接收输入,尽管有些会被股骨和胫骨感受器同时兴奋。这些中间神经元在通过直接刺激单个运动神经元引发的腿部主动运动期间以及在通过对身体其他部位进行触觉刺激引发的运动期间产生尖峰。

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