The effects of shoes with a triple density midsole on lower limb kinematics and kinetics in male recreational runners

X. Jiang, István Bíró
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Abstract

Cushioned or stability running shoes is currently a highly debated topic among runners and researchers. Several footwear companies have developed running shoes to simulate different hardness but few studies have compared a triple density running shoe to deduce the injuries of running. The primary goal of this study was to compare acute changes in three-dimensional (3D) ground reaction forces (GRFs) and lower limb kinematics of habitually shod rear-foot strike (RFS) runners between different hardness and density running shoes. Lower limb joint biomechanical variables of fifteen recreational runners were analyzed using a 3D motion capture system and a force platform. The loading rate at the first impact peak showed no difference between the two shoe conditions. The first impact peak was significantly larger in the triple density shoe condition than in the single density shoe. Combining the inversion and eversion of the ankle during the pushing-off phase, a single midsole showed a bigger eversion angle than a density midsole. The innovative running shoes enhanced the rear-foot stability of runners compared to the control running shoe during the loading (eversion) phase of running.
三密度中底鞋对男性休闲跑步者下肢运动学和动力学的影响
缓震跑鞋或稳定跑鞋目前是跑步者和研究人员之间一个备受争议的话题。一些鞋类公司已经开发出模拟不同硬度的跑鞋,但很少有研究比较三密度跑鞋来推断跑步的伤害。本研究的主要目的是比较不同硬度和密度跑鞋对习惯性穿后足撞击(RFS)跑步者的三维(3D)地面反作用力(GRFs)和下肢运动学的急性变化。采用三维运动捕捉系统和受力平台对15例休闲跑步者下肢关节生物力学变量进行了分析。两种鞋型在第一个冲击峰处的加载速率没有差异。三密度鞋的第一次冲击峰明显大于单密度鞋。结合踝关节在蹬脱阶段的内翻和外翻,单中底比密度中底显示出更大的外翻角度。与常规跑鞋相比,创新跑鞋在跑步加载(版本)阶段增强了跑步者的后脚稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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