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关节角度对人肱二头肌非融合和融合强直收缩期间肌机械图幅度的影响。

Effect of joint angle on mechanomyographic amplitude during unfused and fused tetani in the human biceps brachii muscle.

作者信息

Miyamoto Naokazu, Oda Shingo

机构信息

Laboratory of Human Motor Control, Graduate School of Human and Environmental Studies, Kyoto University, Sakyo-ku, Japan.

出版信息

Eur J Appl Physiol. 2005 Oct;95(2-3):221-8. doi: 10.1007/s00421-005-1359-7. Epub 2005 Aug 16.

Abstract

The influence of muscle length-dependent changes in contractile properties on the mechanomyogram (MMG) was investigated during evoked contractions of the biceps brachii muscle. The biceps of nine healthy subjects was stimulated by single twitches, unfused (10 Hz), and fused (30 Hz) frequencies at elbow joint angles of 75, 90, 105, 120, 135, and 150 degrees. During evoked contractions, the longitudinal movement was estimated by the fluctuation of torque signal, and the lateral movement was detected by MMG. Contraction time and half relaxation time were calculated from the single twitches. For repetitive stimulations, followed by eliminating DC component from torque signals, the root mean square values calculated from the torque and MMG signals, which were torque fluctuation and RMS-MMG, respectively. For the 10 Hz stimulation condition, reductions in the torque fluctuation and RMS-MMG were concomitantly observed with increasing elbow angle, and there was a significant correlation between the torque fluctuation and RMS-MMG. On the other hand, for 30 Hz stimulation, there were no significant differences in the torque fluctuation and RMS-MMG over all elbow angles, and no significant correlation between the two parameters. Moreover, the torque fluctuation and RMS-MMG for 10 Hz stimulation were correlated with the contraction time and half relaxation time obtained at each elbow angle, while there were no correlations for the 30 Hz condition. These data suggest that MMG could be a reliable tool to study the development of fusion and the changes in muscle contractile properties during repetitive unfused contractions.

摘要

在肱二头肌诱发收缩过程中,研究了收缩特性的肌肉长度依赖性变化对肌动图(MMG)的影响。对9名健康受试者的肱二头肌在肘关节角度为75、90、105、120、135和150度时,分别以单次抽搐、非融合(10Hz)和融合(30Hz)频率进行刺激。在诱发收缩期间,通过扭矩信号的波动估计纵向运动,并通过MMG检测横向运动。从单次抽搐中计算收缩时间和半松弛时间。对于重复刺激,在从扭矩信号中消除直流分量之后,分别从扭矩和MMG信号计算均方根值,即扭矩波动和RMS-MMG。在10Hz刺激条件下,随着肘关节角度增加,扭矩波动和RMS-MMG均随之降低,并且扭矩波动与RMS-MMG之间存在显著相关性。另一方面,对于30Hz刺激,在所有肘关节角度下扭矩波动和RMS-MMG均无显著差异,并且这两个参数之间无显著相关性。此外,10Hz刺激的扭矩波动和RMS-MMG与每个肘关节角度下获得的收缩时间和半松弛时间相关,而在30Hz条件下则无相关性。这些数据表明,MMG可能是研究重复非融合收缩期间融合发展和肌肉收缩特性变化的可靠工具。

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