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Motor Control System for Adaptation of Healthy Individuals and Recovery of Poststroke Patients: A Case Study on Muscle Synergies

机译:运动控制系统以适应健康个体和中风后患者的康复:以肌肉协同作用为例

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摘要

Understanding the complex neuromuscular strategies underlying behavioral adaptation in healthy individuals and motor recovery after brain damage is essential for gaining fundamental knowledge on the motor control system. Relying on the concept of muscle synergy, which indicates the number of coordinated muscles needed to accomplish specific movements, we investigated behavioral adaptation in nine healthy participants who were introduced to a familiar environment and unfamiliar environment. We then compared the resulting computed muscle synergies with those observed in 10 moderate-stroke survivors throughout an 11-week motor recovery period. Our results revealed that computed muscle synergy characteristics changed after healthy participants were introduced to the unfamiliar environment, compared with those initially observed in the familiar environment, and exhibited an increased neural response to unpredictable inputs. The altered neural activities dramatically adjusted through behavior training to suit the unfamiliar environment requirements. Interestingly, we observed similar neuromuscular behaviors in patients with moderate stroke during the follow-up period of their motor recovery. This similarity suggests that the underlying neuromuscular strategies for adapting to an unfamiliar environment are comparable to those used for the recovery of motor function after stroke. Both mechanisms can be considered as a recall of neural pathways derived from preexisting muscle synergies, already encoded by the brain's internal model. Our results provide further insight on the fundamental principles of motor control and thus can guide the future development of poststroke therapies.
机译:了解健康个体行为适应和脑损伤后运动恢复背后的复杂神经肌肉策略,对于获得运动控制系统的基本知识至关重要。依靠肌肉协同作用的概念(表示完成特定运动所需的协调肌肉的数量),我们调查了九名健康参与者的行为适应性,这些参与者被引入熟悉的环境和陌生的环境。然后,我们将计算出的肌肉协同作用与在整个11周的运动恢复期内在10名中风幸存者中观察到的协同作用进行了比较。我们的结果表明,与最初在熟悉的环境中观察到的健康参与者相比,将健康的参与者引入陌生的环境后,计算出的肌肉协同特性发生了变化,并且对不可预测的输入表现出增加的神经反应。经过改变的神经活动可以通过行为训练进行调整,以适应陌生的环境要求。有趣的是,我们在中度卒中患者的运动恢复随访期间观察到了类似的神经肌肉行为。这种相似性表明,适应陌生环境的潜在神经肌肉策略与中风后运动功能恢复所使用的策略相当。这两种机制都可以看作是对源自先前存在的肌肉协同作用的神经通路的回忆,这种协同作用已经由大脑的内部模型编码。我们的研究结果提供了关于运动控制基本原理的进一步见解,从而可以指导中风后疗法的未来发展。

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