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鞋底厚度对跑步生物力学的影响。

Effects of footwear midsole thickness on running biomechanics.

机构信息

a Gait & Motion Analysis Laboratory, Department of Rehabilitation Sciences , The Hong Kong Polytechnic University , Hong Kong, China.

b Department of Kinesiology , Shenyang Sport University , Shenyang , China.

出版信息

J Sports Sci. 2019 May;37(9):1004-1010. doi: 10.1080/02640414.2018.1538066. Epub 2018 Oct 25.

Abstract

Shoe manufacturers launch running shoes with increased (e.g., maximalists) or decreased (e.g., minimalists) midsole thickness and claim that they may prevent running injury. Previous studies tested footwear models with different midsole thicknesses on the market but the shoe construct was not strictly comparable. Therefore, in the present study, we examined the effect of midsole thickness, from 1-mm to 29-mm, in a standard test shoe prototype on the vertical loading rates, footstrike angle and temporal spatial parameters in distance runners. Fifteen male habitual rearfoot strikers were recruited from local running clubs. They were asked to run on an instrumented treadmill in shoes with different midsole thicknesses. We found significant interactions between midsole thickness with vertical loading rates (p < 0.001), footstrike angle (p = 0.013), contact time (p < 0.001), cadence (p = 0.003), and stride length (p = 0.004). Specifically, shoes with thinner midsole (1- and 5-mm) significantly increased the vertical loading rates and shortened the contact time, when compared with thicker midsole shoes (25- and 29-mm). However, we did not observe any substantial differences in the footstrike angle, cadence and stride length between other shod conditions. The present study provides biomechanical data regarding the relationship between full spectrum midsole thicknesses and running biomechanics in a group of rearfoot strikers.

摘要

制鞋商推出中底厚度增加(例如,最大化)或减少(例如,最小化)的跑鞋,并声称它们可能预防跑步损伤。先前的研究测试了市场上具有不同中底厚度的鞋类模型,但鞋的结构并不完全可比。因此,在本研究中,我们研究了标准测试鞋原型中从 1 毫米到 29 毫米的中底厚度对长跑运动员垂直加载率、足跟着地角度和时空参数的影响。我们从当地的跑步俱乐部招募了 15 名习惯性后足着地的男性长跑运动员。他们被要求在装有不同中底厚度的仪器化跑步机上跑步。我们发现中底厚度与垂直加载率(p<0.001)、足跟着地角度(p=0.013)、触地时间(p<0.001)、步频(p=0.003)和步长(p=0.004)之间存在显著的相互作用。具体来说,与厚中底鞋(25-和 29 毫米)相比,中底较薄的鞋子(1 毫米和 5 毫米)显著增加了垂直加载率并缩短了触地时间。然而,我们在其他穿鞋条件下没有观察到足跟着地角度、步频和步长的任何实质性差异。本研究提供了关于全频谱中底厚度与一组后足着地者跑步生物力学之间关系的生物力学数据。

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