Ishimura Kazuhiro, Sakurai Shinji
Graduate School of Health and Sport Sciences, Chukyo University, Toyota, Aichi, Japan.
J Appl Biomech. 2016 Aug;32(4):394-400. doi: 10.1123/jab.2015-0127. Epub 2016 Apr 5.
This study investigates the potential asymmetries between inside and outside legs in determinants of curved running speed. To test these asymmetries, a deterministic model of curved running speed was constructed based on components of step length and frequency, including the distances and times of different step phases, takeoff speed and angle, velocities in different directions, and relative height of the runner's center of gravity. Eighteen athletes sprinted 60 m on the curved path of a 400-m track; trials were recorded using a motion-capture system. The variables were calculated following the deterministic model. The average speeds were identical between the 2 sides; however, the step length and frequency were asymmetric. In straight sprinting, there is a trade-off relationship between the step length and frequency; however, such a trade-off relationship was not observed in each step of curved sprinting in this study. Asymmetric vertical velocity at takeoff resulted in an asymmetric flight distance and time. The runners changed the running direction significantly during the outside foot stance because of the asymmetric centripetal force. Moreover, the outside leg had a larger tangential force and shorter stance time. These asymmetries between legs indicated the outside leg plays an important role in curved sprinting.
本研究调查了弯道跑步速度决定因素中内外侧腿之间潜在的不对称性。为了测试这些不对称性,基于步长和步频的组成部分构建了一个弯道跑步速度的确定性模型,包括不同步阶段的距离和时间、起跳速度和角度、不同方向的速度以及跑步者重心的相对高度。18名运动员在400米跑道的弯道上冲刺60米;使用动作捕捉系统记录试验情况。按照确定性模型计算变量。两侧的平均速度相同;然而,步长和步频是不对称的。在直线冲刺中,步长和步频之间存在权衡关系;然而,在本研究的弯道冲刺的每一步中未观察到这种权衡关系。起跳时不对称的垂直速度导致了不对称的飞行距离和时间。由于不对称的向心力,跑步者在外侧脚着地阶段显著改变了跑步方向。此外,外侧腿具有更大的切向力和更短的着地时间。腿之间的这些不对称性表明外侧腿在弯道冲刺中起着重要作用。