Influence of force tremor on mechanomyographic signals recorded with an accelerometer and a condenser microphone during measurement of agonist and antagonist muscles in voluntary submaximal isometric contractions.

IF 3.3 4区 医学 Q1 PHYSIOLOGY Journal of Physiological Anthropology Pub Date : 2008-01-01 DOI:10.2114/jpa2.27.33
Tae-Kwang Kim, Yoshihiro Shimomura, Koichi Iwanaga, Tetsuo Katsuura
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引用次数: 9

Abstract

The purpose of this study was to investigate the influence of force tremor (FT) on the mechanomyogram (MMG) recorded by a condenser microphone (MIC) and an accelerometer (ACC) for the measurement of agonist and antagonist muscles during submaximal isometric contractions. Following determination of the isometric maximum voluntary contraction (MVC), 10 male subjects were asked to perform elbow flexion and extension at 20%, 40%, 60%, and 80% MVC. Surface electromyogram (EMG) and MMG of the biceps brachii (BB) and triceps brachii (TB) were recorded simultaneously using a MIC (MMG-(MIC)) and an ACC (MMG-(ACC)). We analyzed the root mean square (RMS) for all signals and compared the sum of the power spectrum amplitude (SPA) at 3-6 Hz and 8-12 Hz between the MMG-(MIC) and the MMG-(ACC). During elbow flexion and extension, the RMS of the EMG and the MMG-(MIC) of the agonist were significantly (p<0.05) higher than those of the antagonist in each contraction level. The RMS of the MMG-(ACC) of the antagonist showed no significant (p>0.05) difference from that of the agonist, or tended to be higher than the agonist. The SPA of the MMG-(MIC) of the agonist at 3-6 Hz and 8-12 Hz tended to be higher than the antagonist in elbow flexion and extension at each contraction level. The SPA of the MMG-(ACC) of the agonist and that of the antagonist showed no significant (p>0.05) difference, or the antagonist MMG-(ACC) tended to be higher than that of the agonist. These results suggest the MMG detected by a MIC appears to be less affected by FT than is the ACC because of its inherent characteristic to reduce FT in simultaneously evaluated agonist and antagonist muscles by means of MMG during submaximal isometric contraction.

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在测量激动剂和拮抗剂肌肉自主次最大等长收缩时,力震颤对加速度计和电容麦克风记录的肌力图信号的影响。
本研究的目的是探讨力颤(FT)对由电容传声器(MIC)和加速度计(ACC)记录的肌力图(MMG)的影响,以测量亚最大等距收缩时激动剂和拮抗剂肌肉的强度。在确定等长最大自主收缩(MVC)后,10名男性受试者被要求以20%、40%、60%和80% MVC进行肘关节屈伸。采用MIC (MMG-(MIC))和ACC (MMG-(ACC))同时记录肱二头肌(BB)和肱三头肌(TB)的表面肌电图(EMG)和MMG (TB)。我们分析了所有信号的均方根(RMS),并比较了MMG-(MIC)和MMG-(ACC)在3-6 Hz和8-12 Hz的功率谱幅度(SPA)之和。在肘关节屈伸时,激动剂的肌电RMS和MMG-(MIC)与激动剂有显著差异(p0.05),或有高于激动剂的趋势。激动剂的MMG-(MIC)在3 ~ 6 Hz和8 ~ 12 Hz时的SPA在肘关节屈伸各收缩水平均高于拮抗剂。激动剂MMG-(ACC)的SPA与拮抗剂无显著差异(p>0.05),或拮抗剂MMG-(ACC)有高于激动剂的趋势。这些结果表明,与ACC相比,MIC检测到的MMG受FT的影响似乎更小,因为它的固有特征是在亚最大等长收缩期间通过MMG同时评估激动剂和拮抗剂肌肉的FT。
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来源期刊
自引率
6.50%
发文量
39
期刊介绍: Journal of Physiological Anthropology (JPA) is an open access, peer-reviewed journal that publishes research on the physiological functions of modern mankind, with an emphasis on the physical and bio-cultural effects on human adaptability to the current environment. The objective of JPA is to evaluate physiological adaptations to modern living environments, and to publish research from different scientific fields concerned with environmental impact on human life. Topic areas include, but are not limited to: environmental physiology bio-cultural environment living environment epigenetic adaptation development and growth age and sex differences nutrition and morphology physical fitness and health Journal of Physiological Anthropology is the official journal of the Japan Society of Physiological Anthropology.
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