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丘脑猫中与运动相关的网状神经元活动

Reticular neuron activities associated with locomotion in thalamic cats.

作者信息

Shimamura M, Kogure I, Wada S

出版信息

Brain Res. 1982 Jan 7;231(1):51-62. doi: 10.1016/0006-8993(82)90006-3.

Abstract

Unit discharges of the reticular neurons and EMGs of extensors and flexors were recorded in the 4 limbs of thalamic cats during stepping on a motor-driven treadmill to study the functional role of the spino-bulbo-spinal (SBS) reflex in locomotion. (1) Reticular neurons showed alterations of increased or decreased discharge rate depending on the phase of the step cycle; they were divided into input (ascending), output (reticulospinal, R-S) and internuncial neurons underlying the SBS reflex. (2) R-S neurons showed increased spikes from the end o the stance to the beginning of the swing phase; in this period, flexor muscle EMGS were obtained. The spikes decreased or disappeared when extensor EMGs were observed. To analyze the relationship between activity in R-S neurons and flexor muscles, R-S neuron spikes were used for triggering and post-spike EMGs were averaged. Averaged EMGs of the correlated flexor revealed a 12 and 6 ms latency for hind- and forelimbs, respectively. Most R-S neurons elicited EMGs of flexor in muscles of one ipsilateral leg, some elicited flexor EMGs of both the ipsilateral fore-and hindlimbs. (3) Input neurons of the reticular formation from spinal ascending tracts fired spikes upon touching of the skin over the correlated limb. During stepping, they showed two types of response patterns: a burst discharge appeared for the leg which was swinging and touching the belt, the other pattern was of continuous discharges at the end of stance and at the beginning of swing phases. (4) Internuncial neurons which relay impulses between the input and output neurons also showed alternate firings depending on the phase of the step cycle. Spikes could be elicited by touching the skin over the 4 limbs. (5) The relationship among the activities of the 3 groups of reticular neurons was analyzed by the post- or pre-spike averaging technique and appropriate latency responses were obtained. (6) The results indicate that flexor EMGs were excited by cutaneous afferents via the SBS reflex in cats stepping on the treadmill. The role of the SBS reflex in locomotion is discussed.

摘要

在丘脑猫的四肢在电动跑步机上行走时,记录网状神经元的单位放电以及伸肌和屈肌的肌电图,以研究脊髓 - 延髓 - 脊髓(SBS)反射在运动中的功能作用。(1)网状神经元根据步周期的阶段表现出放电率增加或减少的变化;它们被分为输入(上行)、输出(网状脊髓,R - S)和位于SBS反射之下的联络神经元。(2)R - S神经元从站立末期到摆动期开始时放电增加;在此期间,获得了屈肌肌电图。当观察到伸肌肌电图时,放电减少或消失。为了分析R - S神经元活动与屈肌之间的关系,使用R - S神经元放电触发并对放电后的肌电图进行平均。相关屈肌的平均肌电图显示后肢和前肢的潜伏期分别为12毫秒和6毫秒。大多数R - S神经元引发同侧一条腿肌肉中的屈肌肌电图,一些引发同侧前肢和后肢的屈肌肌电图。(3)来自脊髓上行束的网状结构输入神经元在相关肢体的皮肤被触碰时放电。在行走过程中,它们表现出两种反应模式:对于摆动并触碰皮带的腿出现爆发性放电,另一种模式是在站立末期和摆动期开始时持续放电。(4)在输入和输出神经元之间传递冲动的联络神经元也根据步周期的阶段交替放电。触碰四肢皮肤可引发放电。(5)通过放电后或放电前平均技术分析了三组网状神经元活动之间的关系,并获得了适当的潜伏期反应。(6)结果表明,在跑步机上行走的猫中,屈肌肌电图通过SBS反射由皮肤传入神经兴奋。讨论了SBS反射在运动中的作用。

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