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首页> 外文期刊>Frontiers in Neurology >Evaluation of Functional Correlation of Task-Specific Muscle Synergies with Motor Performance in Patients Poststroke
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Evaluation of Functional Correlation of Task-Specific Muscle Synergies with Motor Performance in Patients Poststroke

机译:中风后患者特定任务肌肉协同功能与运动表现的功能相关性评估

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The central nervous system produces movements by activating specifically programmed muscle synergies that are also altered with injuries in the brain, such as stroke. In this study, we hypothesize that there exists a positive correlation between task-specific muscle synergy and motor functions at joint and task levels in patients following stroke. The purpose here is to define and evaluate neurophysiological metrics based on task-specific muscle synergy for assessing motor functions in patients. A patient group of 10 subjects suffering from stroke and a control group of nine age-matched healthy subjects were recruited to participate in this study. Electromyography (EMG) signals and movement kinematics were recorded in patients and control subjects while performing arm reaching tasks. Muscle synergies of individual patients were extracted off-line from EMG records of each patient, and a baseline pattern of muscle synergy was obtained from the pooled EMG data of all nine control subjects. Peak velocities and movement durations of each reaching movement were computed from measured kinematics. Similarity indices of matching components to those of the baseline synergy were defined by synergy vectors and time profiles, respectively, as well as by a combined similarity of vector and time profile. Results showed that pathological synergies of patients were altered from the characteristics of baseline synergy with missing components, or varied vector patterns and time profiles. The kinematic performance measured by peak velocities and movement durations was significantly poorer for the patient group than the control group. In patients, all three similarity indices were found to correlate significantly to the kinematics of movements for the reaching tasks. The correlation to the Fugl-Meyer score of arm was the highest with the vector index, the lowest with the time profile index, and in between with the combined index. These findings illustrate that the analysis of task-specific muscle synergy can provide valuable insights into motor deficits for patients following stroke, and the task-specific similarity indices are useful neurophysiological metrics to predict the function of neuromuscular control at the joint and task levels for patients.
机译:中枢神经系统通过激活专门编程的肌肉协同作用来产生运动,这些协同作用也会因脑部受伤(例如中风)而改变。在这项研究中,我们假设卒中后患者的特定任务肌肉协同作用与关节和任务水平的运动功能之间存在正相关。这里的目的是基于特定任务的肌肉协同作用来定义和评估神经生理指标,以评估患者的运动功能。招募了10名患有中风的患者组和9名年龄匹配的健康受试者作为对照组参加本研究。在执行伸臂任务时,在患者和对照组中记录了肌电图(EMG)信号和运动运动学。从每位患者的EMG记录中离线提取单个患者的肌肉协同作用,并从所有9个对照受试者的EMG汇总数据中获得肌肉协同作用的基线模式。从测得的运动学计算出每次到达运动的峰值速度和运动持续时间。匹配组件与基线协同组件的相似性指标分别由协同矢量和时间分布图以及矢量和时间分布图的相似度定义。结果表明,患者的病理协同作用因基线协同作用的特征而改变,缺少成分,或载体模式和时间分布有所变化。与对照组相比,患者组通过峰值速度和运动持续时间测得的运动学性能明显较差。在患者中,发现所有三个相似性指数都与达到任务的运动运动学显着相关。与arm的Fugl-Meyer得分的相关性在矢量索引中最高,在时间轮廓索引中最低,而在组合索引之间。这些发现表明,对特定任务的肌肉协同作用的分析可以为卒中后患者的运动功能障碍提供有价值的见解,并且特定任务的相似性指标是有用的神经生理指标,可预测患者在关节和任务水平的神经肌肉控制功能。

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