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Stiffness Effects in Rocker-Soled Shoes: Biomechanical Implications

机译:跷板鞋的刚度效应:生物力学意义。

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摘要

Rocker-soled shoes provide a way to reduce the possible concentration of stress, as well as change movement patterns, during gait. This study attempts to examine how plantar force and spatio-temporal variables are affected by two rocker designs, one with softer and one with denser sole materials, by comparing them with the barefoot condition and with flat-soled shoes. Eleven subjects’ gait parameters during walking and jogging were recorded. Our results showed that compared with barefoot walking, plantar forces were higher for flat shoes while lower for both types of rocker shoes, the softer-material rocker being the lowest. The plantar force of flat shoes is greater than the vertical ground reaction force, while that of both rocker shoes is much less, 13.87–30.55% body weight. However, as locomotion speed increased to jogging, for all shoe types, except at the second peak plantar force of the denser sole material rocker shoes, plantar forces were greater than for bare feet. More interestingly, because the transmission of force was faster while jogging, greater plantar force was seen in the rocker-soled shoes with softer material than with denser material; results for higher-speed shock absorption in rocker-soled shoes with softer material were thus not as good. In general, the rolling phenomena along the bottom surface of the rocker shoes, as well as an increase in the duration of simultaneous curve rolling and ankle rotation, could contribute to the reduction of plantar force for both rocker designs. The possible mechanism is the conversion of vertical kinetic energy into rotational kinetic energy. To conclude, since plantar force is related to foot-ground interface and deceleration methods, rocker-design shoes could achieve desired plantar force reduction through certain rolling phenomena, shoe-sole stiffness levels, and locomotion speeds.
机译:跷板鞋提供了一种减少步态中可能的压力集中以及改变运动方式的方法。这项研究试图通过将两种跷跷板设计与赤脚状况和平底鞋进行比较,来研究两种跷跷板设计如何影响足底力和时空变量。记录了11位受试者在步行和慢跑过程中的步态参数。我们的结果表明,与赤脚行走相比,平底鞋的足底力较高,而两种类型的跷板鞋的足底力均较低,材质较软的跷板最低。平底鞋的足底力大于垂直地面反作用力,而两种摇杆鞋的足底力都小得多,体重为13.87–30.55%。但是,对于所有类型的鞋,随着运动速度的增加,到慢跑,除了在鞋底较厚的摇杆鞋的第二个峰值足底力处,足底力要大于赤脚。更有趣的是,因为慢跑时力的传递更快,所以在摇杆底鞋中,较软的材料要比较致密的材料具有更大的足底力。因此,在使用软材料的摇杆底鞋中进行高速减震的结果并不理想。通常,沿着跷板鞋底面的滚动现象,以及同时曲线滚动和脚踝旋转的持续时间的增加,都可能有助于减小两种跷板设计的足底力。可能的机制是将垂直动能转换为旋转动能。总而言之,由于足底力与脚-地面界面和减速方法有关,因此摇杆设计的鞋可以通过某些滚动现象,鞋底刚度水平和运动速度来实现所需的足底力降低。

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