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在视觉运动跟踪任务中揭示的运动专长与感知 - 行动耦合

Sport expertise in perception-action coupling revealed in a visuomotor tracking task.

作者信息

Mallek Maroua, Benguigui Nicolas, Dicks Matt, Thouvarecq Regis

机构信息

a CesamS Laboratory , University of Caen Normandy , Caen , France.

b CETAPS Laboratory , University of Rouen , Mont-Saint-Aignan , France.

出版信息

Eur J Sport Sci. 2017 Nov;17(10):1270-1278. doi: 10.1080/17461391.2017.1375014. Epub 2017 Sep 29.

Abstract

We compared the visuomotor coordination of tennis players with different levels of expertise (Super-Experts, Experts and Non-Experts) in a visuomotor tracking (VMT) task. Participants were asked to track a moving target which could rebound on the sides of a 2D screen. Results indicated that the VMT task allowed the discrimination of expertise. Multiple regression analysis revealed that performance could be explained by the temporal adaptation of participants to rebounds and the number of movement adaptations. Compared to Non-Experts, the Experts had a shorter perturbation time with higher adaptation and regulation. This corresponds to a better perception-action coupling and the predominant use of a prospective control process. Results also indicate that perception-action coupling capacities are transferable to virtual tasks, and allow us to reveal processes of visuomotor coordination that differentiate experts and novices.

摘要

我们在一项视觉运动跟踪(VMT)任务中比较了不同专业水平(超级专家、专家和非专家)的网球运动员的视觉运动协调能力。参与者被要求跟踪一个移动目标,该目标可以在二维屏幕的边缘反弹。结果表明,VMT任务能够区分专业水平。多元回归分析显示,参与者对反弹的时间适应以及运动适应的次数可以解释其表现。与非专家相比,专家的扰动时间更短,适应和调节能力更强。这对应于更好的感知-动作耦合以及前瞻性控制过程的主要使用。结果还表明,感知-动作耦合能力可转移到虚拟任务中,并使我们能够揭示区分专家和新手的视觉运动协调过程。

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