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Evaluation of isokinetic muscle performance using a novel mechanomyogram sensor

机译:使用新型机械髓质图传感器评估等因内肌性能

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A pilot investigation was conducted on the measurement of muscle performance during voluntary exercise using a novel mechanomyogram muscle contraction sensor quantifying muscle tension - the MC-Sensor (TMG-BMC Ltd. Ljubljana, Slovenia). Surface electromyography (sEMG) and the torque output from an isokinetic dynamometer were used as reference for comparative assessment of the MC-sensor data. Five able-bodied subjects performed isokinetic knee extension at 90 deg· s and 120 deg· s. Correlation coefficients (r) between the muscle tension data from MC-sensor, sEMG and Biodex were calculated using Microsoft Excel and a high correlation was observed with an average rvalue of 0.82 to 0.91 at 90 deg· s, and 0.77 to 0.90 at 120 deg· s, respectively. A stronger association was observed between MC-sensor and Biodex, compared to MC-EMG and Biodex-EMG. This might be due to reported complications in achieving an accurate force-EMG ratio. However, further research is necessary to establish the reliability of the mechanomyogram sensors before muscle tension can be utilized as a proxy for muscle force during functional electrical stimulation(FES)-evoked exercise and/or functional movements.
机译:在自愿运动期间使用新的机械髓质肌肉收缩传感器量化肌肉张力,进行了试验调查 - MC-Sensor(TMG-BMC Ltjana,斯洛文尼亚)。表面肌电图(SEMG)和来自等内动力计的扭矩输出用作MC传感器数据的比较评估的参考。五种能够体内的受试者在90℃和120℃下进行等因基膝关节延伸。使用Microsoft Excel计算来自MC-Sensor,SEMG和BIODEX的肌肉张力数据之间的相关系数(R),并且在90℃下的平均RVALUE为0.82至0.91的平均rvalue,0.77至0.90,120° ·S分别。与MC-EMG和BioDex-EMG相比,MC-Sensor和BioDex之间观察到更强的关联。这可能是由于报告了实现准确力-MOG比率的并发症。然而,进一步的研究是在功能电刺激(FES)术后运动和/或功能运动期间的肌肉张力之前可以用作肌肉力的代理以建立机械髓质图传感器的可靠性。

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