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Analysis of linear electrode array EMG for assessment of hemiparetic biceps brachii muscles

机译:线性电极阵列肌电图分析用于评估偏瘫肱二头肌臂肌

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摘要

This study presents a frequency analysis of surface electromyogram (EMG) signals acquired by a linear electrode array from the biceps brachii muscles bilaterally in 14 hemiparetic stroke subjects. For different levels of isometric contraction ranging from 10 to 80% of the maximum voluntary contraction (MVC), the power spectra of 19 bipolar surface EMG channels arranged proximally to distally along the muscle fibers were examined in both paretic and contralateral muscles. It was found that across all stroke subjects, the median frequency (MF) and the mean power frequency (MPF), averaged from different surface EMG channels, were significantly smaller in the paretic muscle compared to the contralateral muscle at each of the matched percent MVC contractions. The muscle fiber conduction velocity (MFCV) was significantly slower in the paretic muscle than in the contralateral muscle. No significant correlation between the averaged MF, MPF, or MFCV vs. torque was found in both paretic and contralateral muscles. However, there was a significant positive correlation between the global MFCV and MF. Examination of individual EMG channels showed that electrodes closest to the estimated muscle innervation zones produced surface EMG signals with significantly higher MF and MPF than more proximal or distal locations in both paretic and contralateral sides. These findings suggest complex central and peripheral neuromuscular alterations (such as selective loss of large motor units, disordered control of motor units, increased motor unit synchronization, and atrophy of muscle fibers, etc.) which can collectively influence the surface EMG signals. The frequency difference with regard to the innervation zone also confirms the relevance of electrode position in surface EMG analysis.
机译:这项研究提出了线性肌电图从14例偏瘫性中风患者的双侧肱二头肌中获取的表面肌电图(EMG)信号的频率分析。对于最大自发性收缩(MVC)的10%到80%的不同等距收缩水平,检查了局部和对侧肌肉中沿肌肉纤维从近端到远端排列的19个双极表面EMG通道的功率谱。结果发现,在所有中风受试者中,在每个匹配的MVC百分比上,与对侧肌肉相比,从不同表面EMG通道平均得到的中位频率(MF)和平均功率频率(MPF)显着小于对侧肌肉收缩。顶替肌的肌肉纤维传导速度(MFCV)比对侧肌明显慢。在平肌和对侧肌肉中,平均MF,MPF或MFCV与扭矩之间均无显着相关性。但是,全局MFCV和MF之间存在显着的正相关。对单个EMG通道的检查表明,最接近估计的肌肉神经区域的电极产生的表面EMG信号的MF和MPF明显高于在对侧和对侧的近端或远端位置。这些发现表明,复杂的中央和周围神经肌肉改变(例如,大型运动单位的选择性丧失,运动单位的无序控制,运动单位同步性的增加以及肌肉纤维的萎缩等)可共同影响表面肌电信号。关于神经支配区域的频率差异也证实了表面肌电图分析中电极位置的相关性。

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