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Auditory Information Reduces Response Time for Ball Rotation Perception, Increasing Counterattack Performance in Table Tennis

机译:听觉信息缩短了球旋转感知的响应时间,提高了乒乓球的反击性能

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Purpose: Identifying the magnitude of ball rotation is critical to reduce response time, aiming to improve table tennis performance. This study analyzed the influence of auditory and visual information on the perception accuracy and counterattack performance of table tennis players. Methods: Twenty-two high-level table tennis players (22.5 +/- 6.1 years, 71.2 +/- 9.8 kg, 173.5 +/- 7.7 cm) performed two tasks. In the first task, the athletes analyzed audio and video files of the forehand movement on a computer screen with auditory, visual, and combined information and, as soon as possible, chose the ball spin type on a keyboard: fast (spinning ball forward at 140 rotations per second (rotations/s); medium (105 rotations/s); slow (84 rotations/s); or flat hit (70 rotations/s). In the second task, the athletes performed 80 counterattacks (forehand movement) at the table on a target (68x38 cm) with and without auditory information. Results: Friedman's ANOVA revealed a significant effect of condition for perception accuracy (p < .001). Post hoc tests showed higher perception accuracy in the combined and visual conditions. ANOVA also revealed a significant effect of condition for response time to perceive ball rotation (p < .001). The response time was shorter in the combined condition than the other conditions for all spin types. Kendall's analyses showed no significant correlations between perception accuracy and response time in any ball spin type. Regarding the counterattack performance, the Wilcoxon signed-rank test indicated higher performance when auditory information was available (p = .022). Conclusions: As auditory information influences the response time and counterattack performance, it seems crucial for trainers and athletes to explore and include auditory perception training methods.
机译:目的:确定球旋转的大小对于减少响应时间至关重要,旨在提高乒乓球的表现。本研究分析了听觉和视觉信息对乒乓球运动员感知准确率和反击表现的影响。方法:22 名高水平乒乓球运动员(22.5 +/- 6.1 岁,71.2 +/- 9.8 kg,173.5 +/- 7.7 cm)执行两项任务。在第一项任务中,运动员分析了计算机屏幕上正手运动的音频和视频文件,包括听觉、视觉和组合信息,并尽快在键盘上选择球旋转类型:快速(以每秒 140 转(旋转/秒)的速度向前旋转球);中速(105 次/秒);慢速(84 转/秒);或平击(70 转/秒)。在第二项任务中,运动员在有或没有听觉信息的情况下,在靶台上对目标(68x38 厘米)进行了 80 次反击(正手运动)。结果:弗里德曼方差分析揭示了条件对感知准确性的显著影响(p < .001)。事后测试显示,在综合和视觉条件下的感知准确性更高。方差分析还揭示了条件对感知球旋转的响应时间的显着影响 (p < .001)。对于所有自旋类型,组合条件下的响应时间比其他条件短。Kendall的分析表明,在任何球旋类型中,感知准确性和响应时间之间没有显着相关性。关于反击性能,Wilcoxon符号秩检验表明,当听觉信息可用时,性能更高(p = .022)。结论:由于听觉信息会影响反应时间和反击表现,因此对于教练员和运动员来说,探索和纳入听觉感知训练方法似乎至关重要。

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