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在特定运动视觉运动反应任务中诱发的运动起始视觉电位。

Motion-Onset Visual Potentials Evoked in a Sport-Specific Visuomotor Reaction Task.

作者信息

Hülsdünker Thorben, Ostermann Martin, Mierau Andreas

机构信息

LUNEX International University of Health, Exercise and Sports.

Fédération Luxemburgeoise de Tennis du Table.

出版信息

J Sport Exerc Psychol. 2020 Jul 14;42(4):280-291. doi: 10.1123/jsep.2019-0255. Print 2020 Aug 1.

Abstract

Although neural visual processes play a crucial role in sport, experiments have been restricted to laboratory conditions lacking ecological validity. Therefore, this study examined the feasibility of measuring visual evoked potentials in a sport-specific visuomotor task. A total of 18 international elite young table tennis athletes (mean age 12.5 years) performed a computer-based and a sport-specific visuomotor reaction task in response to radial motion-onset stimuli on a computer screen and table tennis balls played by a ball machine, respectively. A 64-channel electroencephalography system identified the N2 and N2-r motion-onset visual evoked potentials in the motion-sensitive midtemporal visual area. Visual evoked potential amplitudes were highly correlated between conditions (N2 r = .72, N2-r r = .74) although significantly lower in the sport-specific task than in the lab-based task (N2 p < .001, N2-r p < .001). The results suggest that sport-specific visual stimulation is feasible to evoke visual potentials. This emphasizes the investigation of visual processes under more ecologically valid conditions in sport and exercise science.

摘要

尽管神经视觉过程在运动中起着至关重要的作用,但实验一直局限于缺乏生态效度的实验室条件。因此,本研究探讨了在特定运动的视觉运动任务中测量视觉诱发电位的可行性。共有18名国际精英青年乒乓球运动员(平均年龄12.5岁)分别针对电脑屏幕上的径向运动起始刺激和发球机发出的乒乓球,执行了基于电脑的和特定运动的视觉运动反应任务。一个64通道脑电图系统在运动敏感的颞中视觉区域识别出N2和N2-r运动起始视觉诱发电位。尽管特定运动任务中的视觉诱发电位幅度显著低于基于实验室的任务(N2 p <.001,N2-r p <.001),但不同条件下的视觉诱发电位幅度高度相关(N2 r =.72,N2-r r =.74)。结果表明,特定运动的视觉刺激可诱发视觉电位。这强调了在运动和运动科学中更具生态效度的条件下对视觉过程进行研究的重要性。

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