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减少球门球和弃踢中的故意头球动作可能会减少头部加速的累积暴露风险。

Reducing purposeful headers from goal kicks and punts may reduce cumulative exposure to head acceleration.

作者信息

Caccese Jaclyn B, Lamond Lindsey C, Buckley Thomas A, Kaminski Thomas W

机构信息

a Biomechanics and Movement Science Interdisciplinary Program , University of Delaware , Newark , DE , USA.

b Department of Kinesiology and Applied Physiology , University of Delaware , Newark , DE , USA.

出版信息

Res Sports Med. 2016 Oct-Dec;24(4):407-415. doi: 10.1080/15438627.2016.1230549. Epub 2016 Sep 6.

Abstract

The purpose of this study was to measure peak linear and rotational head acceleration in women's collegiate soccer and explore the variations in acceleration across different strategic scenarios. Game videos from 14 games were used to identify the strategic scenario in which the athlete headed the ball. Strategic scenarios included: bounce, secondary header, punt, throw-in, goal kick, corner kick, and kick. Peak linear and rotational accelerations were measured using the Smart Impact Monitor (Triax Technologies Inc., Norwalk, CT). Goal kick (38.8 ± 19.4 g, p = 0.001, ß = 8.9; 9.3 ± 3.9 krad/s, p = 0.004, ß = 1.9) and punt (36.0 ± 15.1 g, p = 0.055, ß = 6.3; 10.1 ± 4.8 krad/s, p = 0.002, ß = 2.5) impacts resulted in higher linear and rotational head accelerations than the base variable, kick (30.0 ± 19.5 g; 7.5 ± 4.1 krad/s). This suggests that limiting headers from goal kicks and punts in younger athletes who are still learning proper heading technique may limit cumulative linear and rotational accelerations.

摘要

本研究的目的是测量女子大学足球比赛中头部的线性和旋转加速度峰值,并探索不同战略场景下加速度的变化。使用来自14场比赛的视频来确定运动员头球时的战略场景。战略场景包括:反弹球、二次头球、开球、掷界外球、球门球、角球和踢球。使用智能冲击监测器(Triax Technologies Inc.,诺沃克,康涅狄格州)测量线性和旋转加速度峰值。球门球(38.8±19.4g,p = 0.001,β = 8.9;9.3±3.9krad/s,p = 0.004,β = 1.9)和开球(36.0±15.1g,p = 0.055,β = 6.3;10.1±4.8krad/s,p = 0.002,β = 2.5)时的头部线性和旋转加速度高于基础变量踢球(30.0±19.5g;7.5±4.1krad/s)。这表明,对于仍在学习正确头球技术的年轻运动员,限制球门球和开球时的头球次数可能会限制累积的线性和旋转加速度。

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