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速度对非残疾个体轮椅推进过程中肩部肌肉募集模式的影响:初步研究。

Effect of velocity on shoulder muscle recruitment patterns during wheelchair propulsion in nondisabled individuals: pilot study.

作者信息

Qi Liping, Wakeling James, Grange Simon, Ferguson-Pell Martin

机构信息

ASPIRE Centre for Disability Sciences, Institute of Orthopedics and Musculoskeletal Science, University College London, Brockley Hill, Stanmore, London, UK.

出版信息

J Rehabil Res Dev. 2012;49(10):1527-36. doi: 10.1682/jrrd.2011.03.0047.

Abstract

This study investigated how the recruitment patterns of shoulder muscles were influenced by wheelchair propulsion speed. Electromyography (EMG) activity of seven muscles was recorded with surface electrodes on 15 nondisabled subjects during wheelchair propulsion on a stationary ergometer. Kinetic data were measured by a SmartWheel. EMG total intensities were calculated to describe the muscle activation level, while the angles formed by first principal component and second principal component loading scores were calculated to describe the spectral content of EMG signals. Significant differences were observed in kinetic variables between the two testing speeds (p < 0.05). The EMG intensity of the tested muscles increased significantly with increased speed (p < 0.05). The push muscles showed a longer EMG duration, whereas the recovery muscles exhibited significantly earlier EMG onset and peak activities at the fast speed. The smaller angle values in the fast propulsion speed indicated that faster motor units were recruited to match the mechanical requirement for the faster motion. Pushing a manual wheelchair at a faster speed not only requires a higher level of propulsive muscle activity but also a higher level of recovery muscle activation.

摘要

本研究调查了肩部肌肉的募集模式如何受到轮椅推进速度的影响。在15名非残疾受试者于固定测力计上进行轮椅推进时,使用表面电极记录了七块肌肉的肌电图(EMG)活动。通过智能轮测量动力学数据。计算EMG总强度以描述肌肉激活水平,同时计算第一主成分和第二主成分负荷得分所形成的角度以描述EMG信号的频谱内容。在两种测试速度之间的动力学变量中观察到显著差异(p < 0.05)。测试肌肉的EMG强度随速度增加而显著增加(p < 0.05)。推动肌肉的EMG持续时间更长,而恢复肌肉在快速推进时EMG起始和峰值活动显著更早。快速推进速度下较小的角度值表明,更快地募集运动单位以满足更快运动的机械需求。以更快速度推动手动轮椅不仅需要更高水平的推进肌肉活动,还需要更高水平的恢复肌肉激活。

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