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Optimal Trajectory Formation of Human Reaching Movement in Crank-Rotation Task

机译:曲柄转动任务中人体接近运动的最优轨迹形成

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摘要

Opening a door, turning a steering wheel, rotating a coffee mill are typical examples of human movements constrained by the external environment. The constraints decrease mobility of the human arm and lead to redundancy in the distribution of interaction force between the arm joints. Due to the redundancy of force actuation in the constrained motions, there is an infinitexnumber of ways to form the arm trajectory. However, humans form the hand trajectory in a unique way. How do humans resolve the redundancy of the constrained motions and specify the hand trajectory? To investigate these problems, we examine the trajectories of the human arm in a crank-rotation task. To explain the trajectory formation in constrained point-to-point motions, we propose a novel criterion minimizing hand contact force change and torque change over the time of the movement. Our experiments show a close matching between the prediction and the subjects' data. This indicates that in constrained movements the CNS naturally selects a moving contact frame as the criterion for the trajectory formation.
机译:打开门,转动方向盘,旋转咖啡机是受外部环境限制的人体运动的典型示例。这些约束降低了人类手臂的活动性,并导致手臂关节之间相互作用力的分布变得多余。由于约束运动中力致动的冗余性,形成臂轨迹的方法有无数种。但是,人类以独特的方式形成手部轨迹。人类如何解决约束运动的冗余并指定手部轨迹?为了研究这些问题,我们检查了曲柄旋转任务中人手臂的轨迹。为了解释受约束的点对点运动中的轨迹形成,我们提出了一种新的准则,该准则将随着运动时间的手接触力变化和扭矩变化最小化。我们的实验表明,预测与受试者数据之间存在紧密匹配。这表明,在受限制的运动中,CNS自然会选择移动的接触框架作为轨迹形成的标准。

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