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A Pilot Study of the Effects of Pulley Location and Design Parameters on Hand Movements during Pulley Threading Operations

机译:皮带轮穿线操作中皮带轮位置和设计参数对手部动作影响的初步研究

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摘要

Three healthy individuals participated in a laboratory experiment that required routing a thin continuous thread through a series of pulleys mounted on a vertical work surface. Task precision demand was manipulated by altering pulley outer diameter (38 mm, 76 mm, and 152 mm) and groove width (3 mm, 6 mm, and 9 mm). The target location of each destination pulley relative to the origin at the mid-sagittal plane was also manipulated. These factors were hypothesized to influence hand motion trajectories, peak speed, and task completion time. Smaller pulley diameters and larger groove widths, representing lower precision demands, were associated with smoother trajectories and a faster task completion time. These preliminary findings suggest a systematic influence of task precision demands on movement kinematics and task performance.
机译:三个健康的人参加了一项实验室实验,该实验要求通过安装在垂直工作面上的一系列皮带轮布置细的连续线。通过更改皮带轮外径(38 mm,76 mm和152 mm)和凹槽宽度(3 mm,6 mm和9 mm)来控制任务精度要求。还操纵了每个目标皮带轮相对于原点在矢状面中间的目标位置。假设这些因素会影响手的运动轨迹,峰值速度和任务完成时间。较小的皮带轮直径和较大的凹槽宽度代表较低的精度要求,这与较平滑的轨迹和更快的任务完成时间有关。这些初步发现表明,任务精度要求对运动运动学和任务性能的系统影响。

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