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平地和斜坡轮椅推进过程中肩部肌肉的协调模式。

Coordination patterns of shoulder muscles during level-ground and incline wheelchair propulsion.

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, United Kingdom.

出版信息

J Rehabil Res Dev. 2013;50(5):651-62. doi: 10.1682/jrrd.2012.06.0109.

Abstract

The aim of this study was to investigate how the coordination patterns of shoulder muscles change with level-ground and incline wheelchair propulsion. Wheelchair kinetics and electromyography (EMG) activity of seven muscles were recorded with surface electrodes for 15 nondisabled subjects during wheelchair propulsion on a stationary ergometer and wooden ramp (4 degree slope). Kinetic data were measured by a SmartWheel. The kinetics variables and the onset, cessation, and duration of EMG activity from seven muscles were compared with paired t-tests for two sessions. Muscle coordination patterns across seven muscles were analyzed by principal component analysis. Push forces on the push rim and the percentage of push phase in the cycle increased significantly during incline propulsion. Propulsion condition and posture affected muscle coordination patterns. During incline propulsion, there was more intense and longer EMG activity of push muscles in the push phase and less EMG activity of the recovery muscles, which corresponded with the increased kinetic data total force output and longer push phase in the incline condition. This work establishes a framework for developing a performance feedback system for wheelchair users to better coordinate their muscle patterning activity.

摘要

本研究的目的是调查肩部肌肉的协调模式如何随着平地上和斜坡上的轮椅推进而变化。使用表面电极记录了15名非残疾受试者在固定测力计和木制斜坡(4度坡度)上进行轮椅推进时七种肌肉的轮椅动力学和肌电图(EMG)活动。动力学数据由SmartWheel测量。通过配对t检验对两个阶段的动力学变量以及七种肌肉的EMG活动的起始、停止和持续时间进行了比较。通过主成分分析对七种肌肉的肌肉协调模式进行了分析。在斜坡推进过程中,轮辋上的推力和周期中推进阶段的百分比显著增加。推进条件和姿势会影响肌肉协调模式。在斜坡推进过程中,推进肌肉在推进阶段的EMG活动更强烈且持续时间更长,而恢复肌肉的EMG活动更少,这与斜坡条件下增加的动力学数据总力输出和更长的推进阶段相对应。这项工作为开发一种性能反馈系统建立了框架,以帮助轮椅使用者更好地协调他们的肌肉模式活动。

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