首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Validation of a portable EMG device to assess muscle activity during free-living situations
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Validation of a portable EMG device to assess muscle activity during free-living situations

机译:验证便携式EMG设备以评估自由活动期间的肌肉活动

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摘要

Portable amplifiers that record electromyograms (EMGs) for longer than four hours are commonly priced over $20,000 USD. This cost, and the technical challenges associated with recording EMGs during free-living situations, typically restrict EMG use to laboratory settings. A low-cost system (μEMG; OT Bioelecttronica, 100?), using specialized concentric bipolar electrodes, has been developed specifically for free-living situations. The purpose of this study was to validate the μEMG system by comparing EMGs from μEMG with a laboratory-based alternative (Telemyo 900; Noraxon USA, Inc.). Surface EMGs from biceps brachii (BB) and tibialis anterior (TA) of ten subjects were recorded simultaneously with both systems as subjects performed maximal voluntary contractions (MVCs), submaximal contractions at 25%, 50%, and 75% MVC, seven simulated activities of daily living (ADLs), and >60 min of simulated free-living inside the laboratory. In general, EMG parameters (e.g., average full-wave rectified EMG amplitude) derived from both systems were not significantly different for all outcome variables, except there were small differences across systems in baseline noise and absolute EMG amplitudes during MVCs. These results suggest that μEMG is a valid approach to the long-term recording of EMG.
机译:记录肌电图(EMG)超过四个小时的便携式放大器的价格通常超过20,000美元。这种成本以及与在自由生活期间录制EMG相关的技术挑战通常将EMG的使用限制在实验室环境中。使用专门的同心双极电极开发了一种低成本系统(μEMG; OT Bioelecttronica,100?),专门用于自由生活。这项研究的目的是通过将μEMG的EMG与实验室替代品(Telemyo 900; Noraxon USA,Inc.)进行比较来验证μEMG系统。同时记录两个系统的10位肱二头肌肱肌(BB)和胫前肌(TA)的表面肌电图,因为受试者进行了最大自愿收缩(MVC),次最大收缩分别为25%,50%和75%MVC,进行了七个模拟活动日常生活(ADL),以及实验室内超过60分钟的模拟自由生活。通常,对于两个结果变量,从两个系统导出的EMG参数(例如,平均全波整流EMG幅度)均没有显着差异,但在MVC期间,系统之间的基线噪声和绝对EMG幅度之间存在微小差异。这些结果表明,μEMG是长期记录EMG的有效方法。

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