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鞋内增高垫的优化设计可降低健康男性的足底压力。

An optimized design of in-shoe heel lifts reduces plantar pressure of healthy males.

作者信息

Zhang Xianyi, Li Bo, Liang Kaiyun, Wan Qiufeng, Vanwanseele Benedicte

机构信息

Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, Sichuan University, Chengdu, PR China; Human Movement Biomechanics Research Group, Department of Kinesiology, KU Leuven, Leuven, Belgium.

Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, Sichuan University, Chengdu, PR China.

出版信息

Gait Posture. 2016 Jun;47:43-7. doi: 10.1016/j.gaitpost.2016.04.003. Epub 2016 Apr 13.

Abstract

Conventional heel lift with a flat surface increases the risk of foot problems related to higher plantar pressure and decreased stability. In this study, an optimized design of in-shoe heel lifts developed to maintain the midfoot function was tested to investigate if the plantar pressure distribution was improved. The design was based on three dimensional foot plantar contour which was captured by an Infoot 3D scanning system while the heel was elevated by a heel wedge. To facilitate midfoot function, an arch support was designed to support the lateral longitudinal arch, while allowing functional movement of the medial longitudinal arch. Twenty healthy male subjects were asked to walk along an 8m walkway while wearing high-cut footwear with and without the optimized heel lift. Peak pressure, contact area and force-time integral were measured using the Pedar insole system. Range and velocity of medial-lateral center of pressure during forefoot contact phase and foot flat phase were collected using a Footscan pressure plate. Compared to the shoe only condition, peak pressure under the rearfoot decreased with the optimized heel lift, while no increase of peak pressure was observed under the forefoot and midfoot regions, indicating improved plantar pressure distribution. The findings of this study suggest that this optimized heel lift has better biomechanical performance than a conventional flat heel lift. Results from this study may have implications for insole and shoe last design, especially for people who need additional heel height without sacrificing midfoot function.

摘要

具有平坦表面的传统足跟垫会增加与足底压力升高和稳定性降低相关的足部问题风险。在本研究中,测试了一种为维持中足功能而开发的鞋内足跟垫优化设计,以研究其是否能改善足底压力分布。该设计基于三维足部足底轮廓,该轮廓由Infoot 3D扫描系统在足跟通过足跟楔块抬高时捕获。为促进中足功能,设计了一个足弓支撑来支撑外侧纵弓,同时允许内侧纵弓进行功能性运动。20名健康男性受试者被要求穿着高帮鞋,分别在有和没有优化足跟垫的情况下沿着8米长的通道行走。使用Pedar鞋垫系统测量峰值压力、接触面积和力-时间积分。使用Footscan压力板收集前足接触阶段和足放平阶段中外侧-内侧压力中心的范围和速度。与仅穿鞋子的情况相比,使用优化足跟垫后后足下方的峰值压力降低,而在前足和中足区域未观察到峰值压力增加,表明足底压力分布得到改善。本研究结果表明,这种优化的足跟垫比传统的平足跟垫具有更好的生物力学性能。本研究结果可能对鞋垫和鞋楦设计有启示,特别是对于那些需要增加足跟高度而又不牺牲中足功能的人。

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