在力量产生和释放过程中,手指的运动自由度对任务表现的影响:射箭射击动作

Kim, Ki-tae, Dayuan Xu, Park Jaebum
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引用次数: 2

摘要

目的:本研究的目的是研究手指自由度的变化(即参与任务的手指数)对力的产生和释放任务表现的影响。方法:选取年龄29.63±3.02岁,身高1.73±0.04 m,体重70.25±9.05 kg的右撇子青年男性8例。受试者被要求用食指-中指(IM)、食指-中指-无名指(IMR)和食指-中指-无名指(IMRL)三种手指组合按压传感器。在试验期间,他们被指示在前5秒内保持法向和切向力的稳态水平。在前5秒后,受试者被指示在接下来的5秒内以自行选择的方式尽可能快地松开传感器上的手指,最终使力为零。编写定制的MATLAB代码(MathWorks Inc., Natick, MA, USA)用于数据分析。量化了以下变量:1)手指力共享模式,2)瞄准阶段三轴力对目标力的均方根误差(RMSE), 3)释放阶段的时间持续时间(释放时间),4)虚拟射击位置的精度和精度指标。结果:在稳态阶段,法向力和切向力的均方根误差随手指数的增加而减小。IMR条件下的精度指数比IM条件下的精度指数更小(更精确),而两种条件下的精度指数无显著差异。此外,释放时间在不同条件下无显著差异。结论:研究表明,手指数量的增加使瞄准阶段的误差补偿更好,射击更稳定(即精度指数更小)。然而,手指数量的增加并没有影响释放时间,这可能会影响终端性能的一致性。因此,手指的数量导致了当前任务的积极结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Kinetic Degrees of Freedom of the Fingers on the Task Performance during Force Production and Release: Archery Shooting-like Action
Objective: The purpose of this study was to examine the effect of changes in degrees of freedom of the fingers (i.e., the number of the fingers involved in tasks) on the task performance during force production and releasing task. Method: Eight right-handed young men (age: 29.63±3.02 yr, height: 1.73±0.04 m, weight: 70.25±9.05 kg) participated in this study. The subjects were required to press the transducers with three combinations of fingers, including the index-middle (IM), index-middle-ring (IMR), and index-middle-ring-little (IMRL). During the trials, they were instructed to maintain a steady-state level of both normal and tangential forces within the first 5 sec. After the first 5 sec, the subjects were instructed to release the fingers on the transducers as quickly as possible at a self-selected manner within the next 5 sec, resulting in zero force at the end. Customized MATLAB codes (MathWorks Inc., Natick, MA, USA) were written for data analysis. The following variables were quantified: 1) finger force sharing pattern, 2) root mean square error (RMSE) of force to the target force in three axes at the aiming phase, 3) the time duration of the release phase (release time), and 4) the accuracy and precision indexes of the virtual firing position. Results: The RMSE was decreased with the number of fingers increased in both normal and tangential forces at the steady-state phase. The precision index was smaller (more precise) in the IMR condition than in the IM condition, while no significant difference in the accuracy index was observed between the conditions. In addition, no significant difference in release time was found between the conditions. Conclusion: The study provides evidence that the increased number of fingers resulted in better error compensation at the aiming phase and performed a more constant shooting (i.e., smaller precision index). However, the increased number of fingers did not affect the release time, which may influence the consistency of terminal performance. Thus, the number of fingers led to positive results for the current task.
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