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Visual regulation of manual aiming: A comparison of methods

机译:手动瞄准的视觉调节:方法的比较

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Visual regulation of upper limb movements occurs throughout the trajectory and is not confined to discrete control in the target area. Early control is based on the dynamic relationship between the limb, the target, and the environment. Despite robust outcome differences between protocols involving visual manipulations, it remains difficult to identify the kinematic events that characterize these differences. In this study, participants performed manual aiming movements with and without vision. We compared several traditional approaches to movement analysis with two new methods of quantifying online limb regulation. As expected, participants undershot the target and their movement endpoints were more variable when vision was not available. Although traditional measures such as reaction time, time after peak velocity, and the presence of discontinuities in acceleration were sensitive to the visual manipulation, measures quantifying the trial-to-trial spatial variability throughout the trajectory were the most effective in isolating the time course of online regulation.
机译:上肢运动的视觉调节发生在整个轨迹中,并且不限于目标区域中的离散控制。早期控制基于肢体,目标与环境之间的动态关系。尽管涉及视觉操纵的方案之间的结果差异很大,但是仍然难以识别表征这些差异的运动事件。在这项研究中,参与者在有视力和无视力的情况下进行了手动瞄准运动。我们将几种传统的运动分析方法与两种新的定量在线肢体调节的新方法进行了比较。不出所料,参与者无法达到目标时,他们的运动终点变化更大。尽管传统的方法(例如反应时间,峰值速度后的时间以及加速度中存在不连续性)对视觉操作很敏感,但是量化整个轨迹中试验到试验的空间变异性的方法在隔离运动时间过程中最有效。在线监管。

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