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首页> 外文期刊>Nature reviews Cancer >Standardised computer-based reaction tests predict the sport-specific visuomotor speed and performance of young elite table tennis athletes
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Standardised computer-based reaction tests predict the sport-specific visuomotor speed and performance of young elite table tennis athletes

机译:标准化的计算机反应试验预测了年轻精英乒乓球运动员的体育特异性保护速和性能

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摘要

The importance of visuomotor reactions in sports is inevitable; however, its assessment using computer-based tests raises the question, if results are transferable to sport-specific situations. Since computer-based simple reaction tests are widely used by sport scientists and practioners, this study examined their relation to sport-specific visuomotor reaction speed and performance. Seventeen international young elite table tennis players performed a simple visuomotor reaction test in response to stimuli presented on a computer screen (laboratory experiment) as well as table tennis balls played by a ball robot (sport-specific experiment). A sport-specific cued choice reaction task served as a control condition. The visuomotor reaction time (VMRT) was determined for all tasks. In addition, neurophysiological correlates of visual perception/processing speed (N2/N2-r) were measured in the laboratory experiment. The VMRT and neurophysiological parameters measured in the laboratory experiment predicted the sport-specific reaction speed (VMRT: r = 0.62; N2: r = 0.51; N2-r: r = -0.47) as well as sport-specific visuomotor performance reflected by the number of successfully hit balls (VMRT: r = -0.68; N2: r = -0.65; N2-r: r = 0.50). This did not apply to the choice reaction task. This study suggests computer-based behavioural and neurophysiological indices of visuomotor reaction time are directly related to the sport-specific visuomotor speed and performance in a more ecologically valid setting.
机译:体育中的游瓜素反应的重要性是不可避免的;但是,如果结果可转移到体育特定情况,则使用基于计算机的测试的评估提出了问题。由于基于计算机的简单反应测试被体育科学家和实践者广泛使用,这项研究检查了与体育特异性游瓜素反应速度和性能的关系。 17个国际年轻精英乒乓球运动员响应于计算机屏幕(实验室实验)的刺激以及由球机器人(体育专用实验)发挥的乒乓球,进行了简单的游瓜瓜瓜粉反应试验。一种特定的体育CUED选择反应任务用作控制条件。确定所有任务的体瓜素反应时间(VMRT)。此外,在实验室实验中测量了视觉感知/处理速度(N2 / N2-R)的神经生理学相关性。在实验室实验中测量的VMRT和神经生理学参数预测了运动特异性反应速度(VMRT:r = 0.62; N2:r = 0.51; N2-R:r = -0.47)以及由此反映的运动特异性求解素性能成功击球的数量(VMRT:r = -0.68; n2:r = -0.65; n2-r:r = 0.50)。这不适用于选择反应任务。本研究表明,基于计算机的行为和神经生理学指数的游体反应时间与运动特异性的体育频率和性能直接相关,在更生态的有效环境中。

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