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Submovement control processes in discrete aiming as a function of space-time constraints

机译:离散瞄准中的子运动控制过程与时空约束的关系

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摘要

There is preliminary evidence that there are several types of submovements in movement aiming that reflect different processes of control and can result from particular task constraints. The purpose of the study was to investigate the effect of movement space and time task criteria on the prevalence of different submovement control characteristics in discrete aiming. Twelve participants completed 3 distance x 5 time conditions each with 100 trials in a target-aiming movement task. The kinematic structure of the trajectory determined the prevalence of 5 submovement types (none; pre-peak, post-peak movement velocity; undershoot, overshoot). The findings showed that the overall number of submovements increased in the slower space-time conditions and was predominantly characterized by post-peak trajectory submovements rather than discrete overshoot submovements. Overshoot submovements were more frequent in the high average movement velocity and short time duration conditions. We concluded that there are qualitatively different distributional patterns of submovement types in discrete aiming tasks that are organized by the quantitative scaling of the average movement velocity arising from multiple control processes to meet the specific space-time task constraints.
机译:有初步证据表明,针对移动的子移动有几种类型,它们反映了不同的控制过程,并且可能由特定的任务约束导致。该研究的目的是研究运动空间和时间任务标准对离散瞄准中不同子运动控制特征的普遍性的影响。 12名参与者完成了3个距离x 5个时间条件,每个条件下都进行了100次针对目标移动任务的试验。轨迹的运动学结构确定了5种子运动类型的普遍性(无;峰前,峰后运动速度;下冲,过冲)。研究结果表明,子运动的总数在较慢的时空条件下增加,并且主要以峰后轨迹子运动为特征,而不是离散的超调子运动为特征。在较高的平均运动速度和较短的持续时间条件下,超调子运动更为频繁。我们得出结论,在离散瞄准任务中,子运动类型在质量上有不同的分布模式,这些任务是通过对多个控制过程所产生的平均运动速度进行定量缩放来组织的,以满足特定的时空任务约束。

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