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Proprioceptive feedback during point-to-point arm movements is tuned to the expected dynamics of the task

机译:在点对点手臂运动期间的本体感觉反馈已调整为任务的预期动态

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It has previously been found that in point-to-point movements against inertial loads, proprioceptive feedback is centrally suppressed in the beginning of movement and is facilitated at a time that is correlated with the expected time of peak velocity. This suggests that the modulation of proprioceptive feedback is governed by the desired movement kinematics. Here we show that in movements against inertial and viscous loads, the correlation of the time when the feedback is facilitated is strongest with the time when the joint torque is expected to be maximal. This suggests that the modulation of proprioceptive feedback is governed by the desired movement dynamics. We applied unexpected perturbations in point-to-point elbow flexion movements against known light and heavy inertial and viscous loads and determined the time and magnitude of responses in the electromyogram (EMG) of the biceps and triceps muscles. In movements against the inertial and viscous loads, the time of the EMG responses was better predicted by the time of the peak joint torque in the unperturbed movement than by the time of peak velocity or the time of peak acceleration or by measures related to the agonist EMG. Moreover, the EMG response changed from a reciprocal pattern in the inertial load conditions to a co-contraction pattern in the viscous load conditions. Our results suggest that during movements against known stable dynamic loads, proprioceptive feedback is tuned to the expected task dynamics and is facilitated so as to maintain muscle stiffness at a time when the muscles are expected to generate maximal force. Keywords Human - Motor control - Voluntary movement - Reflex - Electromyogram
机译:先前已经发现,在抵抗惯性载荷的点对点运动中,本体感觉反馈在运动开始时被集中抑制,并且在与峰值速度的预期时间相关的时间被促进。这表明,本体感受反馈的调制受所需运动运动控制。在这里,我们表明,在抵抗惯性和粘性载荷的运动中,促进反馈的时间与预计关节扭矩最大的时间之间的相关性最强。这表明本体感受反馈的调制受所需运动动力学支配。我们对已知的轻,重惯性和粘性载荷在点对点肘部弯曲运动中应用了意外的扰动,并确定了二头肌和三头肌肌肉的肌电图(EMG)的响应时间和幅度。在抵抗惯性和粘性载荷的运动中,通过无扰动运动中的峰值关节扭矩的时间比通过峰值速度或峰值加速度的时间或与激动剂相关的措施更好地预测EMG响应的时间。 EMG。而且,EMG响应从惯性负载条件下的往复模式改变为粘性负载条件下的共收缩模式。我们的结果表明,在抵抗已知的稳定动态载荷的运动过程中,本体感受反馈被调整为预期的任务动态,并且在预期肌肉产生最大力的时候可以促进其保持肌肉僵硬。关键词人-运动控制-自愿运动-反射-肌电图

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