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离心收缩后组织学骨骼肌损伤与表面肌电图的关系

Histological skeletal muscle damage and surface EMG relationships following eccentric contractions.

作者信息

Kano Yutaka, Masuda Kazumi, Furukawa Hirotaka, Sudo Mizuki, Mito Kazuyuki, Sakamoto Kazuyoshi

机构信息

Department of Applied Physics and Chemistry, University of Electro-Communications, Chofugaoka, Chofu, Tokyo, 182-8585 Japan.

出版信息

J Physiol Sci. 2008 Oct;58(5):349-55. doi: 10.2170/physiolsci.RP004908. Epub 2008 Oct 7.

Abstract

This study examined the effects of a different number of eccentric contractions (ECs) on histological characteristics, surface electromyogram (EMG) parameters (integral EMG, iEMG; muscle fiber conduction velocity, MFCV; and action potential waveform), and isometric peak torque using the rat EC model. Male Wistar rats (n = 40) were anesthetized, and ECs were initiated in the tibialis anterior muscle via electrical stimulation while the muscle was being stretched by electromotor. The rats were grouped according to the number of ECs (EC1, EC5, EC10, EC20, EC30, EC40, and EC100). Three days after the ECs, surface EMG signals and isometric peak torque were measured during evoked twitch contractions via electrical stimulation of the peroneal nerve. The muscle damage was evaluated from hematoxylin-eosin (HE) stained cross sections as a relative number of damaged fibers to intact fibers. Intense histological muscle damage (approximately 50% to 70% of the fiber), loss of isometric peak torque, disturbance of action potential waveform, and depression of iEMG (approximately -60% to -70%) were observed at EC20, EC30, EC40, and EC100. On the other hand, the MFCV did not change in any EC group. Although muscle damage and pathological surface EMG signals were not found at EC10, isometric peak torque was reduced significantly. In conclusion, the extent of histological muscle damage is not proportionally related to the number of ECs. Muscle damage was reflected by iEMG and action potential waveforms, but not by MFCV, which remained unaffected even though approximately 50% to 70% of the fiber demonstrated injury.

摘要

本研究使用大鼠离心收缩(EC)模型,考察了不同次数的离心收缩对组织学特征、表面肌电图(EMG)参数(肌电积分,iEMG;肌纤维传导速度,MFCV;以及动作电位波形)和等长收缩峰值扭矩的影响。将40只雄性Wistar大鼠麻醉,在通过电动马达拉伸胫骨前肌的同时,经电刺激在该肌肉中引发离心收缩。根据离心收缩次数将大鼠分组(EC1、EC5、EC10、EC20、EC30、EC40和EC100)。离心收缩3天后,通过电刺激腓总神经诱发抽搐收缩,期间测量表面肌电信号和等长收缩峰值扭矩。从苏木精-伊红(HE)染色的横切面上评估肌肉损伤情况,以受损纤维与完整纤维的相对数量表示。在EC20、EC30、EC40和EC100组中观察到严重的组织学肌肉损伤(约50%至70%的纤维)、等长收缩峰值扭矩降低、动作电位波形紊乱以及iEMG降低(约-60%至-70%)。另一方面,任何离心收缩组的MFCV均未发生变化。尽管在EC10组未发现肌肉损伤和病理性表面肌电信号,但等长收缩峰值扭矩显著降低。总之,组织学肌肉损伤程度与离心收缩次数不成正比。肌肉损伤通过iEMG和动作电位波形反映,但MFCV未受影响,即使约50%至70%的纤维显示有损伤。

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