用数学模型分析表面肌电图的测量条件。

A Seo, M Kakehashi, S Tsuru, F Yoshinaga
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引用次数: 1

摘要

为了研究工业卫生领域工作分析用表面肌电图的测量条件,采用数学模型研究了电极固定、电极距离和电极-肌距离对表面肌电图测量的影响。实验结果如下:1)比较两种电极固定模型的输出波形,即平行固定模型(两个电极与肌肉纤维方向平行固定)和横向固定模型(两个电极与肌肉纤维方向横向固定)。并联固定模型的最大输出是横向固定模型的2.59倍,整流综合输出是横向固定模型的1.2 ~ 1.5倍。平行固定模型的高输出面积仅为1个圆形区域,而横向固定模型的高输出面积为4个圆形区域,比平行固定模型的大。当电极固定在神经肌肉接点附近时,平行固定模型的整流积分输出比横向固定模型受神经肌肉接点位置的影响更大。2)整流积分输出随电极距离的增加而增加,当电极距离小于2 cm时,整流积分输出随电极距离的变化速率特别大。(摘要删节250字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Analysis of measuring conditions of surface electromyogram using mathematical model].

To study the measuring conditions of surface electromyogram for work analysis in the field of industrial health, the effect of electrode fixation, electrode distance and electrode-muscle distance were studied using a mathematical model. The results were as follows; 1) The output waveforms of two electrode fixed models, i.e., parallel-fixed model (two electrodes were fixed in parallel to the direction of the muscle fibers) and transverse-fixed model (two electrodes were fixed in transverse to the direction of the muscle fibers) were compared. The maximum output and rectified integrated output of the parallel-fixed model were 2.59 times and 1.2-1.5 times larger than those of transverse-fixed model, respectively. The high output area of the parallel-fixed model was only one round area, but the areas of transverse-fixed model were four round areas which were wider than the area of the parallel-fixed model. The rectified integrated output of the parallel-fixed model was more affected by the location of neuro-muscular junction than that of transverse-fixed model when the electrodes were fixed near the neuro-muscular junction. 2) The rectified integrated output increased by electrode distance, and the changing rate of the rectified integrated output by electrode distance was particularly large when the electrode distance was shorter than 2 cm.(ABSTRACT TRUNCATED AT 250 WORDS)

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