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青少年羽毛球运动员在头顶击球后单腿落地时高躯干加速度的差异。

Differences in high trunk acceleration during single-leg landing after an overhead stroke between junior and adolescent badminton athletes.

机构信息

Faculty of Health Sciences, Tokyo Ariake University of Medical and Health Sciences, Tokyo, Japan.

Department of Sports Wellness Sciences, Japan Women's College of Physical Education, Tokyo, Japan.

出版信息

Sports Biomech. 2022 Nov;21(10):1160-1175. doi: 10.1080/14763141.2020.1740310. Epub 2020 Apr 24.

Abstract

The magnitude of trunk acceleration reflects the ground reaction force. This study compared the frequency of high trunk accelerations during single-leg landing after an overhead stroke between junior and adolescent badminton players, and examined the difference in each directive magnitude according to age and landing leg. Thirty-eight female badminton players (17 junior and 21 adolescent athletes) played two singles games while wearing a tri-axial accelerometer on their upper back. The frequency and 95% confidence interval (CI) of single-leg landings that generated >4-G resultant acceleration, and each directive magnitude were calculated. A two-factorial analysis of variance (factor 1: group, factor 2: landing leg) was performed to determine the effects of age and different landing patterns. Frequency of single-leg landings following an overhead stroke in the adolescent athletes (mean, 1.71 cases/min; 95% CI, 1.59-1.83 cases/min) was higher than that in the junior athletes (mean, 1.13 cases/min; 95% CI, 1.01-1.25 cases/min). The adolescent athletes exhibited greater mediolateral acceleration in the movement towards racket-hand leg and anteroposterior acceleration in the movement towards the opposite leg than the junior athletes. This cross-sectional study suggests that the frequency and movement pattern associated with high-load landing in badminton games differ between junior and adolescent athletes.

摘要

躯干加速度的大小反映了地面反作用力。本研究比较了头顶击球后单腿落地时青少年和少年羽毛球运动员的躯干高速加速度的频率,并根据年龄和落地腿检查了每个方向的差异。38 名女性羽毛球运动员(17 名青少年和 21 名少年运动员)在上背部佩戴三轴加速度计进行了两场单打比赛。计算了产生 >4-G 合成加速度的单腿着陆的频率和 95%置信区间(CI),以及每个方向的幅度。进行了双因素方差分析(因素 1:组,因素 2:落地腿),以确定年龄和不同着陆模式的影响。青少年运动员(平均,1.71 例/分钟;95%CI,1.59-1.83 例/分钟)在头顶击球后单腿落地的频率高于少年运动员(平均,1.13 例/分钟;95%CI,1.01-1.25 例/分钟)。与少年运动员相比,青少年运动员在向球拍手腿运动时的横向加速度和向相反腿运动时的前后加速度更大。这项横断面研究表明,青少年和少年运动员在羽毛球比赛中与高负荷着陆相关的频率和运动模式存在差异。

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