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人类腕伸肌中Ia突触前抑制的任务依赖性:单运动单位研究

Task dependence of Ia presynaptic inhibition in human wrist extensor muscles: a single motor unit study.

作者信息

Aimonetti J M, Vedel J P, Schmied A, Pagni S

机构信息

Laboratoire de Physiologie et Physiopathologie Neuromusculaire Humaine, CNRS-DPM, 31 chemin Joseph Aiguier, 13402 Marseille 20, Cedex, France.

出版信息

Clin Neurophysiol. 2000 Jul;111(7):1165-74. doi: 10.1016/s1388-2457(00)00293-5.

Abstract

OBJECTIVE

Task-dependent changes in the Ia presynaptic inhibition generated by flexor group I afferents were investigated in 25 identified motor units (MUs) located in human extensor carpi radialis (ECR) muscles.

METHODS

Seven subjects had to voluntarily contract their ECR muscles either alone during isometric wrist extension or concurrently with their wrist and finger flexor muscles while clenching their hand around a manipulandum. The MU reflex responses to the radial nerve stimulation (test stimulation) yielded narrow peaks in the post-stimulus time histograms (PSTH). The Ia presynaptic inhibition induced while stimulating the median nerve (conditioning stimulation) 20 and 40 ms before the radial nerve was assessed from the changes in the contents of the first 0.5 ms in the peaks.

RESULTS

With both stimulation intervals, the Ia presynaptic inhibition, as assessed from the first 0.5 ms of the PSTH peaks, was consistently weaker during hand clenching. With both motor tasks, the Ia presynaptic inhibition was strongest at the 20 ms interval, in which it showed a downward gradient, working from slow to fast contracting MUs. With both intervals, the presynaptic inhibition was consistently weaker during hand clenching. The decrease in the Ia presynaptic inhibition observed at the 40 ms conditioning-test interval was less pronounced during wrist extension.

CONCLUSION

It is suggested that the reason why Ia presynaptic inhibition was weaker during hand clenching may have been that this task involved numerous cutaneous inputs originating from the palm and finger tips. During gripping tasks, these cutaneous inputs may therefore contribute to adjusting the wrist stiffness by relieving the presynaptic inhibition.

摘要

目的

研究位于人类桡侧腕伸肌(ECR)中的25个已识别运动单位(MU)中,由屈肌I类传入纤维产生的Ia突触前抑制的任务依赖性变化。

方法

7名受试者必须在等长腕伸展时单独自愿收缩其ECR肌肉,或者在手握操纵器紧握时,同时收缩其腕部和手指屈肌。运动单位对桡神经刺激(测试刺激)的反射反应在刺激后时间直方图(PSTH)中产生狭窄的峰值。在桡神经刺激前20和40毫秒刺激正中神经(条件刺激)时诱导的Ia突触前抑制,通过峰值中前0.5毫秒内容的变化来评估。

结果

在两个刺激间隔下,从PSTH峰值的前0.5毫秒评估的Ia突触前抑制在手握紧时始终较弱。在两项运动任务中,Ia突触前抑制在20毫秒间隔时最强,在该间隔中它呈现出从慢收缩运动单位到快收缩运动单位的下降梯度。在两个间隔下,突触前抑制在手握紧时始终较弱。在40毫秒条件刺激 - 测试间隔时观察到的Ia突触前抑制的降低在腕伸展期间不太明显。

结论

有人提出,在手握紧时Ia突触前抑制较弱的原因可能是该任务涉及大量来自手掌和指尖的皮肤输入。因此,在抓握任务期间,这些皮肤输入可能通过减轻突触前抑制来有助于调节腕部僵硬度。

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