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Influence of gravity compensation on muscle activation patterns during different temporal phases of arm movements of stroke patients

机译:重力补偿对中风患者手臂运动不同时间阶段的肌肉激活模式的影响

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摘要

Background. Arm support to help compensate for the effects of gravity may improve functional use of the shoulder and elbow during therapy after stroke, but gravity compensation may alter motor control. Objective. To obtain quantitative information on how gravity compensation influences muscle activation patterns during functional, 3-dimensional reaching movements. Methods. Eight patients with mild hemiparesis performed 2 sets of repeated reach and retrieval movements, with and without unloading the arm, using a device that acted at the elbow and forearm to compensate for gravity. Electromyographic (EMG) patterns of 6 upper extremity muscles were compared during elbow and shoulder joint excursions with and without gravity compensation. Results. Movement performance was similar with and without gravity compensation. Smooth rectified EMG (SRE) values were decreased from 25% to 50% during movements with gravity compensation in 5 out of 6 muscles. The variation of SRE values across movement phases did not differ across conditions. Conclusions. Gravity compensation did not affect general patterns of muscle activation in this sample of stroke patients, probably since they had adequate function to complete the task without arm support. Gravity compensation did facilitate active arm movement excursions without impairing motor control. Gravity compensation may be a valuable modality in conventional or robot-aided therapy to increase the intensity of training for mildly impaired patients.
机译:背景。手臂支撑以帮助补偿重力影响,可以在中风后的治疗期间改善肩膀和肘部的功能使用,但重力补偿可能会改变运动控制。目的。若要获取有关重力补偿如何在功能性3维到达运动中影响肌肉激活模式的定量信息。方法。八名轻度偏瘫的患者使用一种作用于肘部和前臂的装置来补偿重力,进行了两组重复的到达和收回运动,无论有无手臂卸载。在有和没有重力补偿的情况下,在肘部和肩关节短途旅行期间比较了6条上肢肌肉的肌电图(EMG)模式。结果。有和没有重力补偿时,运动性能相似。在6个肌肉中有5个肌肉进行重力补偿的运动过程中,平滑整流的EMG(SRE)值从25%降至50%。 SRE值在运动阶段之间的变化在各种条件下没有差异。结论重力补偿不影响中风患者样本中的一般肌肉激活模式,这可能是因为他们具有足够的功能来完成没有手臂支撑的任务。重力补偿确实有助于主动手臂运动,而又不损害电机控制。重力补偿可能是常规疗法或机器人辅助疗法中有价值的一种方式,可以增加轻度受损患者的训练强度。

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