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猫在运动过程中伸肌的短潜伏期交叉抑制反应。

Short-latency crossed inhibitory responses in extensor muscles during locomotion in the cat.

作者信息

Frigon Alain, Rossignol Serge

机构信息

Groupe de Recherche sur le Système Nerveux Central, Department of Physiology, Faculty of Medicine, Université de Montréal, Montreal, Quebec, Canada.

出版信息

J Neurophysiol. 2008 Feb;99(2):989-98. doi: 10.1152/jn.01274.2007. Epub 2007 Dec 19.

Abstract

During locomotion, contacting an obstacle generates a coordinated response involving flexion of the stimulated leg and activation of extensors contralaterally to ensure adequate support and forward progression. Activation of motoneurons innervating contralateral muscles (i.e., crossed extensor reflex) has always been described as an excitation, but the present paper shows that excitatory responses during locomotion are almost always preceded by a short period of inhibition. Data from seven cats chronically implanted with bipolar electrodes to record electromyography (EMG) of several hindlimb muscles bilaterally were used. A stimulating cuff electrode placed around the left tibial and left superficial peroneal nerves at the level of the ankle in five and two cats, respectively, evoked cutaneous reflexes during locomotion. During locomotion, short-latency ( approximately 13 ms) inhibitory responses were frequently observed in extensors of the right leg (i.e., contralateral to the stimulation), such as gluteus medius and triceps surae muscles, which were followed by excitatory responses ( approximately 25 ms). Burst durations of the left sartorius (Srt), a hip flexor, and ankle extensors of the right leg increased concomitantly in the mid- to late-flexion phases of locomotion with nerve stimulation. Moreover, the onset and offset of Srt and ankle extensor bursts bilaterally were altered in specific phases of the step cycle. Short-latency crossed inhibition in ankle extensors appears to be an integral component of cutaneous reflex pathways in intact cats during locomotion, which could be important in synchronizing EMG bursts in muscles of both legs.

摘要

在运动过程中,接触障碍物会引发一种协调反应,包括受刺激腿部的屈曲以及对侧伸肌的激活,以确保足够的支撑和向前推进。支配对侧肌肉的运动神经元的激活(即交叉伸肌反射)一直被描述为一种兴奋,但本文表明,运动过程中的兴奋反应几乎总是先有一段短暂的抑制期。使用了来自七只长期植入双极电极以双侧记录几条后肢肌肉肌电图(EMG)的猫的数据。在五只猫和两只猫中,分别在踝关节水平围绕左胫神经和左腓浅神经放置刺激袖带电极,在运动过程中诱发皮肤反射。在运动过程中,经常在右腿的伸肌(即与刺激对侧)中观察到短潜伏期(约13毫秒)的抑制反应,如臀中肌和腓肠三头肌,随后是兴奋反应(约25毫秒)。在运动的中晚期屈曲阶段,随着神经刺激,左缝匠肌(Srt,一种髋屈肌)和右腿踝关节伸肌的爆发持续时间同时增加。此外,在步周期的特定阶段,双侧Srt和踝关节伸肌爆发的起始和结束发生了改变。踝关节伸肌中的短潜伏期交叉抑制似乎是完整猫在运动过程中皮肤反射通路的一个组成部分,这可能对同步双腿肌肉的肌电图爆发很重要。

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