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The dynamics of human isometric pointing movements under varying accuracy requirements.

机译:在变化的精度要求下,人体等距指向运动的动力学。

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摘要

The goal of the present study was to explore the relation between speed-accuracy trade-off phenomena and action kinematics in the case of pointing under isometric conditions. Increasing task difficulty resulted in a linear increase in movement time (as predicted by Fitts' law) and in systematic changes in the spatio-temporal patterning of force production. The observed changes in motion topology were similar to those reported for isotonic tasks and adequately captured by a limit cycle model derived for the latter type of task. These results indicate that, for isometric force control as for isotonic position control, the reasons underlying the emergence of Fitts' law might be sought in dynamic trajectory formation processes.
机译:本研究的目的是探讨在等距条件下指向的情况下速度精度权衡现象与动作运动学之间的关系。任务难度的增加导致运动时间线性增加(如菲茨定律所预测),并且力产生的时空模式发生系统变化。在运动拓扑中观察到的变化与等渗任务所报告的变化相似,并且可以通过为后一种任务派生的极限循环模型充分捕获。这些结果表明,对于等距力控制和等渗位置控制,可能会在动态轨迹形成过程中寻找菲茨定律出现的根本原因。

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