Tsujimoto Norio, Nunome Hiroyuki, Ikegami Yasuo
a Faculty of Sports and Health Sciences , Fukui University of Technology , Fukui , Japan.
b Faculty of Sports and Health Science , Fukuoka University , Fukuoka , Japan.
J Sports Sci. 2017 May;35(9):898-905. doi: 10.1080/02640414.2016.1201209. Epub 2016 Jun 30.
Rearfoot external eversion moments due to ground reaction forces (GRF) during running have been suggested to contribute to overuse running injuries. This study aimed to identify primary factors inducing these rearfoot external eversion moments. Fourteen healthy men ran barefoot across a force plate embedded in the middle of 30-m runway with 3.30 ± 0.17 m · s. Total rearfoot external eversion/inversion moments (Mtot) were broken down into the component Mxy due to medio-lateral GRF (Fxy) and the component Mz due to vertical GRF (Fz). Ankle joint centre height and medio-lateral distance from the centre of pressure to the ankle joint centre (a_cop) were calculated as the moment arm of these moments. Mxy dominated Mtot just after heel contact, with the magnitude strongly dependent on Fxy, which was most likely caused by the medio-lateral foot velocity before heel contact. Mz then became the main generator of Mtot throughout the first half of the stance phase, during which a_cop was the critical factor influencing the magnitude. Medio-lateral foot velocity before heel contact and medio-lateral distance from the centre of pressure to the ankle joint centre throughout the first half of the stance phase were identified as primary factors inducing the rearfoot external eversion moment.
跑步过程中,地面反作用力(GRF)导致的后足外翻力矩被认为是造成过度使用性跑步损伤的原因之一。本研究旨在确定引起这些后足外翻力矩的主要因素。14名健康男性赤足跑过嵌入30米跑道中间的测力台,速度为3.30±0.17米·秒。后足总的外翻/内翻力矩(Mtot)被分解为由内外侧GRF(Fxy)产生的分量Mxy和由垂直GRF(Fz)产生的分量Mz。踝关节中心高度以及从压力中心到踝关节中心的内外侧距离(a_cop)被计算为这些力矩的力臂。脚跟刚接触地面后,Mxy主导Mtot,其大小强烈依赖于Fxy,这很可能是由脚跟接触前的内外侧足部速度引起的。然后在整个站立阶段的前半段,Mz成为Mtot的主要产生因素,在此期间a_cop是影响大小的关键因素。脚跟接触前的内外侧足部速度以及整个站立阶段前半段从压力中心到踝关节中心的内外侧距离被确定为引起后足外翻力矩的主要因素。