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Vary Slow Motion: Effect of Task Forces on Movement Variability and Implications for a Novel Skill Augmentation Mechanism

机译:变化的慢动作:工作队对运动变异性的影响及其对新型技能增强机制的启示

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This article presents the results of a human subject experiment aimed at answering the question, "can increased muscle force variability in low force levels explain increased variability or intermittency of slow movements?" To address this research question, we conducted an experiment with eight subjects, which involved the completion of slow elbow flexion movements at two target speed levels and under five resistive torque fields implemented via an elbow exoskeleton. The results of this experiment demonstrated that increasing levels of resistive torques decreased movement speed variability only until a certain torque level. This observation indicates that a motor-unit pool-based muscle force generation variability, which is known to increase at low force levels, can indeed underlie increased variability in slow movements. Our results imply that resistive torques may be used to significantly decrease movement speed variability, opening up new possibilities for novel assistive devices for motor skill augmentation.
机译:本文介绍了旨在回答以下问题的人体实验结果:“在低力量水平下增加的肌肉力量可变性可以解释缓慢运动的可变性或间歇性吗?”为了解决这个研究问题,我们进行了八个对象的实验,涉及在两个目标速度水平下以及在通过肘外骨骼施加的五个阻力扭矩场下完成缓慢的肘部屈曲运动。该实验的结果表明,增加的阻力扭矩水平直到一定的扭矩水平才降低运动速度的可变性。该观察结果表明,以运动单位池为基础的肌肉力量生成变异性(已知在较低的力量水平下会增加)确实可以作为缓慢运动中变异性增加的基础。我们的研究结果表明,抵抗扭矩可用于显着降低运动速度的可变性,从而为新型辅助运动技能的辅助设备开辟了新的可能性。

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