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直至疲劳耗尽的静态疲劳收缩过程中表面肌电图和声学肌图参数的变化:肘关节角度的影响

Changes in surface EMG and acoustic myogram parameters during static fatiguing contractions until exhaustion: influence of elbow joint angles.

作者信息

Mamaghani N K, Shimomura Y, Iwanaga K, Katsuura T

机构信息

Ergonomics Section, Graduate School of Science and Technology, Chiba University.

出版信息

J Physiol Anthropol Appl Human Sci. 2001 Mar;20(2):131-40. doi: 10.2114/jpa.20.131.

Abstract

The purpose of this study was to evaluate muscle fatigue using electromyogram (EMG) and acoustic myogram (AMG) signals of the shoulder and arm muscles during sustained holding tasks, with the elbow at different angles and at different levels of maximum voluntary contraction (MVC). The EMG and AMG of four muscles, including the upper trapezius (TP), anterior deltoid (DL), biceps brachii (BB), and brachioradialis (BR), were recorded during experiments using 10 healthy young males. The experiments were conducted under 9 pairs of conditions: 3 elbow angles (120 degrees, 90 degrees, and 60 degrees) and *3 levels of %MVC (20%, 40%, and 60%). Subjects were instructed to hold a weight equal to the designated %MVC at designated joint angles and asked to maintain that condition for as long as possible until exhaustion. Joint angles were also recorded by the electrogoniometers. The analysis of variance revealed that there was no significant effect of elbow angle on the mean MVC or on the endurance time. Elbow angle showed a significant effect on mean power frequency (MPF) of EMG in DL, BB, and BR, and a significant effect on root mean square (RMS) of EMG in four muscles. In BB and BR, MPF of EMG at 120 degrees was found to be significantly lower than 90 degrees and 60 degrees, respectively. There was a significant main effect of elbow angle on MPF of AMG for TP at 20% MVC; for DL at 20% and 40% MVC; for BB at 40% and 60% MVC; and for BR at the three levels of %MVC. The results showed that the range MPF of AMG for DL, BB, and BR was between 32 to 46 Hz, whereas that for TP was from 49 to 83 Hz. There was a significant effect of elbow angle on RMS of AMG in all four muscles in all experiments. At 20% MVC, a progressive increase in RMS of AMG was observed with time. In contrast, at 40% and 60% MVC, RMS showed very different behavior; specifically, it was found that RMS of AMG at 20% MVC significantly increased with increase of elbow angle. We conclude that RMS of AMG has a good and clear correlation with elbow angle at a low level of contraction.

摘要

本研究的目的是在持续握持任务期间,通过肩部和手臂肌肉的肌电图(EMG)和声肌图(AMG)信号,评估在不同肘部角度和不同最大自主收缩(MVC)水平下的肌肉疲劳情况。使用10名健康年轻男性进行实验,记录了四块肌肉(包括上斜方肌(TP)、三角肌前束(DL)、肱二头肌(BB)和肱桡肌(BR))的EMG和AMG。实验在9组条件下进行:3个肘部角度(120度、90度和60度)以及3个MVC百分比水平(20%、40%和60%)。受试者被指示在指定关节角度握持等于指定MVC百分比的重量,并要求尽可能长时间保持该状态直至疲劳。关节角度也由电子测角仪记录。方差分析显示,肘部角度对平均MVC或耐力时间没有显著影响。肘部角度对DL、BB和BR中EMG的平均功率频率(MPF)有显著影响,对四块肌肉中EMG的均方根(RMS)有显著影响。在BB和BR中,发现120度时EMG的MPF分别显著低于90度和60度时。对于TP在20%MVC时、DL在20%和40%MVC时、BB在40%和60%MVC时以及BR在三个MVC百分比水平时,肘部角度对AMG的MPF有显著的主效应。结果表明,DL、BB和BR的AMG的MPF范围在32至46赫兹之间,而TP的MPF范围为49至83赫兹。在所有实验中,肘部角度对所有四块肌肉中AMG的RMS都有显著影响。在20%MVC时,观察到AMG的RMS随时间逐渐增加。相比之下,在40%和60%MVC时,RMS表现出非常不同的行为;具体而言,发现在20%MVC时,AMG的RMS随肘部角度增加而显著增加。我们得出结论,在低收缩水平下,AMG的RMS与肘部角度有良好且明显的相关性。

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