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Analysis of muscle synergy for evaluation of task-specific performance in stroke patients

机译:评估肌肉协同作用以评估中风患者的特定任务绩效

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Muscle synergy represents a central neural module that organizes and activates a group of muscles when performing a certain task. However, whether muscle synergy is a good physiological indicator of motor ability in task performance for patients suffering stroke is not clear. The purpose of this study is to understand how information of task-specific muscle synergy in healthy subjects and patients post stroke can be used to evaluate their motor ability, and further to assist motor rehabilitation for stroke patients. Electromyography (EMG) signals and movement kinematics in reaching tasks were recorded in 5 healthy subjects and 4 stroke patients. Muscle synergies were extracted from EMGs and compared cross healthy and stroke subjects. Normal synergies displayed a characteristic pattern common in healthy subjects. But pathological synergies in stroke subjects lacked the characteristics of normal synergy without a common component, implicating varying extent of damage to the motor module due to lesion in cerebral circuits. Further analysis in stroke subjects showed that pathological patterns of synergy in stroke subjects corresponded to the abnormality in their movement control compared with healthy subjects. Data showed that task-specific muscle synergy did reveal a positive correlation to the ability of neural control of tasks. It was further observed that task-specific synergy was changed towards the normal pattern after intervention with functional electrical stimulation in patients post stroke.
机译:肌肉协同作用代表一个中枢神经模块,在执行特定任务时,该模块可以组织和激活一组肌肉。然而,尚不清楚肌肉协同作用是否是中风患者任务表现中运动能力的良好生理指标。这项研究的目的是了解健康受试者和中风后患者特定任务的肌肉协同作用信息如何用于评估其运动能力,并进一步帮助中风患者进行运动康复。在5名健康受试者和4名中风患者中记录了达到任务的肌电图(EMG)信号和运动运动学。从肌电图中提取肌肉协同作用,并比较健康和中风受试者。正常的协同作用显示出健康受试者常见的特征性模式。但是,中风受试者的病理协同作用缺乏正常协同作用的特征,而没有共同的组成部分,这暗示着由于大脑回路病变而对运动模块造成的损伤程度各不相同。对中风受试者的进一步分析表明,与健康受试者相比,中风受试者的协同作用的病理模式与他们的运动控制异常相对应。数据显示,特定任务的肌肉协同作用确实显示出与任务的神经控制能力呈正相关。进一步观察到,中风后患者接受功能性电刺激干预后,特定于任务的协同作用朝正常模式转变。

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