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单次冲刺加速和最大速度阶段的短跑成绩与地面反作用力的关联

Association of Sprint Performance With Ground Reaction Forces During Acceleration and Maximal Speed Phases in a Single Sprint.

作者信息

Nagahara Ryu, Mizutani Mirai, Matsuo Akifumi, Kanehisa Hiroaki, Fukunaga Tetsuo

机构信息

1 National Institute of Fitness and Sports in Kanoya.

出版信息

J Appl Biomech. 2018 Apr 1;34(2):104-110. doi: 10.1123/jab.2016-0356. Epub 2018 Mar 22.

Abstract

We aimed to clarify the mechanical determinants of sprinting performance during acceleration and maximal speed phases of a single sprint, using ground reaction forces (GRFs). While 18 male athletes performed a 60-m sprint, GRF was measured at every step over a 50-m distance from the start. Variables during the entire acceleration phase were approximated with a fourth-order polynomial. Subsequently, accelerations at 55%, 65%, 75%, 85%, and 95% of maximal speed, and running speed during the maximal speed phase were determined as sprinting performance variables. Ground reaction impulses and mean GRFs during the acceleration and maximal speed phases were selected as independent variables. Stepwise multiple regression analysis selected propulsive and braking impulses as contributors to acceleration at 55%-95% (β > 0.72) and 75%-95% (β > 0.18), respectively, of maximal speed. Moreover, mean vertical force was a contributor to maximal running speed (β = 0.48). The current results demonstrate that exerting a large propulsive force during the entire acceleration phase, suppressing braking force when approaching maximal speed, and producing a large vertical force during the maximal speed phase are essential for achieving greater acceleration and maintaining higher maximal speed, respectively.

摘要

我们旨在利用地面反作用力(GRF),阐明单次冲刺加速阶段和最高速度阶段冲刺表现的力学决定因素。18名男性运动员进行60米冲刺时,在起跑后50米的距离内,每一步都测量GRF。整个加速阶段的变量用四阶多项式近似。随后,将最高速度的55%、65%、75%、85%和95%时的加速度以及最高速度阶段的跑步速度确定为冲刺表现变量。选择加速阶段和最高速度阶段的地面反作用冲量和平均GRF作为自变量。逐步多元回归分析分别选择推进冲量和制动脉冲作为最高速度55%-95%(β>0.72)和75%-95%(β>0.18)时加速度的影响因素。此外,平均垂直力是最高跑步速度的影响因素(β = 0.48)。目前的结果表明,在整个加速阶段施加较大的推进力,在接近最高速度时抑制制动力,以及在最高速度阶段产生较大的垂直力,分别是实现更大加速度和保持更高最高速度的关键。

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