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大鼠比目鱼肌远端肌腱转位至跖肌肌腱后比目鱼肌的运动单位特性

Motor unit properties in the soleus muscle after its distal tendon transfer to the plantaris muscle tendon in the rat.

作者信息

Giroux-Metges Marie-Agnès, Pennec Jean-Pierre, Petit Julien, Goanvec Christelle, Dorange Germaine, Gioux Maxime

机构信息

Laboratoire de Physiologie, Faculté de Médecine, 22 avenue Camille Desmoulins, 29238 Brest Cedex 3, France.

出版信息

J Physiol. 2003 Dec 15;553(Pt 3):925-33. doi: 10.1113/jphysiol.2003.048389. Epub 2003 Sep 12.

Abstract

The aim of this study was to evaluate how a modification in the mechanical conditions under which a muscle is used could induce changes in the characteristics and the spinal drive of its motor units (MU). The distal tendon of the soleus muscle of Wistar rats was transferred to the distal stump of the plantaris muscle tendon. The EMG activity of the soleus was chronically recorded for 8 weeks, every other day, during a 1-min treadmill walk. After spinal ventral root splitting, individual MU contractile properties were measured in control soleus (102 MUs) or in transposed soleus muscles after 4 weeks (41 MUs) or 8 weeks (28 MUs). Muscle/body weight ratio did not vary after transposition, nor did MU tetanic forces. A decrease in MU twitch contraction times and in their half relaxation times was observed at weeks 4 and 8. MU tension-frequency curves varied significantly after tendon transfer, becoming closer to the curves of the fast MUs of the control group. During locomotion, we observed no change in the amplitude of rectified-filtered electromyographic activity, but a significant decrease in mean burst duration and an increase in the median frequency of the power density spectrum. Tendon transposition of the soleus muscle brought about adaptations in MU contractile properties and soleus spinal control.

摘要

本研究的目的是评估肌肉使用时机械条件的改变如何诱导其运动单位(MU)的特性和脊髓驱动发生变化。将Wistar大鼠比目鱼肌的远端肌腱转移至跖肌肌腱的远端残端。每隔一天在1分钟的跑步机行走过程中,长期记录比目鱼肌的肌电图活动,持续8周。在脊髓腹侧根切断后,在对照比目鱼肌(102个运动单位)或转位比目鱼肌4周后(41个运动单位)或8周后(28个运动单位)测量单个运动单位的收缩特性。转位后肌肉/体重比没有变化,运动单位强直力也没有变化。在第4周和第8周时,观察到运动单位抽搐收缩时间及其半松弛时间减少。肌腱转移后,运动单位张力-频率曲线有显著变化,变得更接近对照组快运动单位的曲线。在运动过程中,我们观察到整流滤波后的肌电图活动幅度没有变化,但平均爆发持续时间显著减少,功率密度谱的中位数频率增加。比目鱼肌肌腱转位导致运动单位收缩特性和比目鱼肌脊髓控制发生适应性变化。

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