首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Interaction against different environmental dynamics during a leg extension task is controlled by temporal rather than amplitude scaling of muscular activity
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Interaction against different environmental dynamics during a leg extension task is controlled by temporal rather than amplitude scaling of muscular activity

机译:腿部伸展运动中针对不同环境动力学的交互作用是通过肌肉活动的时间而非幅度缩放来控制的

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Force exertion against different mechanical environments can affect motor control strategies in order to account for the altered environmental dynamics and to maintain the ability to produce force. Here, we investigated the change of muscular activity of selected muscles of the lower extremities while the participants interacted with an external mechanical device of variable stability. Twenty-five healthy participants exerted force against the device by performing a unilateral ballistic leg extension task under 1 or 3 degrees of freedom (DoF). Directional force data and electromyographic responses from four leg muscles (TA, VM, GM, PL) were recorded. Muscle responses to the altered experimental conditions were analyzed by calculating time to peak electrical activity (TTP), peak electrical activity (PEA), slope of EMG-signal and muscle activity. It was found that neuromuscular system adjustments to the task are expressed mainly by temporal (TTP) rather than amplitude (PEA) scaling of muscular activity. This change was specific for the investigated muscles. Moreover, a selective increase of muscle activity occurred while increasing external DoF. This scheme was accompanied by a significant reduction of applicable force against the device in the unstable 3 DoF condition. The findings suggest that orchestration of movement control is linked to environmental dynamics also affecting the ability to produce force under dynamic conditions. The adjustments of the neuromuscular system are rather temporal in nature being consistent with the impulse timing hypothesis of motor control.
机译:针对不同的机械环境施加的力会影响电机的控制策略,以解决环境动力学的变化并保持产生力的能力。在这里,我们研究了参与者与可变稳定性的外部机械设备交互作用时下肢选定肌肉的肌肉活动的变化。 25名健康参与者通过在1或3自由度(DoF)下执行单侧弹道腿伸展任务对设备施加了力量。记录来自四个腿部肌肉(TA,VM,GM,PL)的方向力数据和肌电图反应。通过计算达到峰值电活动时间(TTP),峰值电活动(PEA),EMG信号斜率和肌肉活动的时间来分析对变化的实验条件的肌肉反应。发现对任务的神经肌肉系统调节主要通过肌肉活动的时间(TTP)而不是幅度(PEA)缩放来表示。这种变化是特定于所研究的肌肉。而且,在增加外部自由度的同时,选择性地增加了肌肉活动。该方案伴随着在不稳定的3 DoF条件下对器件施加的力显着降低。研究结果表明,运动控制的编排与环境动力学有关,也影响动态条件下产生力量的能力。神经肌肉系统的调节本质上是暂时的,与运动控制的脉冲时间假设相一致。

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