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具有两种纵向弯曲刚度的摇椅半径对前足足底压力分布的影响。

Effects of rocker radii with two longitudinal bending stiffnesses on plantar pressure distribution in the forefoot.

作者信息

Ten Wolde I Y, van Kouwenhove L, Dekker R, Hijmans J M, Greve C

机构信息

University of Groningen, University Medical Center Groningen, Center for Human Movement Sciences, Groningen, The Netherlands.

University of Groningen, University Medical Center Groningen, Department of Rehabilitation Medicine, Groningen, The Netherlands.

出版信息

Gait Posture. 2021 Oct;90:457-463. doi: 10.1016/j.gaitpost.2021.09.186. Epub 2021 Sep 22.

Abstract

INTRODUCTION

Outsole parameters of the shoe can be adapted to offload regions of pain or region of high pressures. Previous studies already showed reduced plantar pressures in the forefoot due to a proximally placed apex position and higher longitudinal bending stiffness (LBS). The aim of this study was to determine the effect of changes in rocker radii and high LBS on the plantar pressure profile during gait.

METHOD

10 participants walked in seven shoe conditions of which one control shoe and six rocker shoes with small, medium and large rocker radii and low and high longitudinal bending stiffness. Pedar in-shoe plantar pressure measuring system was used to quantify plantar pressures while walking on a treadmill at self-selected walking speed. Peak plantar pressure, maximum mean pressure and force-time integral were analyzed with Generalized Estimated Equation (GEE) and Tukey post hoc correction (α = .05).

RESULTS

Significantly lower plantar pressures were found in the first toe, toes 2-5, distal and proximal forefoot in all rocker shoe conditions as compared to the control shoe. Plantar pressures in the first toe and toes 2-5 were significantly lower in the small radius compared to medium and large radii. For the distal forefoot both small and medium radii significantly reduced plantar pressure compared to large radii. Low LBS reduced plantar pressure at the first toe significantly compared to high LBS independent of the rocker radius. Plantar pressures in the distal forefoot and toes 2-5 were lower in high LBS compared to low LBS.

CONCLUSION

Manipulation of the rocker radius and LBS can effectively reduce peak plantar pressures in the forefoot region during gait. In line with previous studies, we showed that depending on the exact target location for offloading, different combinations of rocker radius and LBS need to be adopted to maximize treatment effects.

摘要

引言

鞋子的外底参数可进行调整,以减轻疼痛区域或高压区域的压力。先前的研究已经表明,由于顶点位置靠近近端以及较高的纵向弯曲刚度(LBS),前脚掌的足底压力会降低。本研究的目的是确定摇椅半径的变化和高纵向弯曲刚度对步态期间足底压力分布的影响。

方法

10名参与者在七种鞋子条件下行走,其中一种是对照鞋,六种是摇椅鞋,摇椅半径分别为小、中、大,纵向弯曲刚度分别为低和高。使用Pedar鞋内足底压力测量系统,在跑步机上以自选步行速度行走时量化足底压力。采用广义估计方程(GEE)和Tukey事后校正(α = .05)分析足底峰值压力、最大平均压力和力-时间积分。

结果

与对照鞋相比,在所有摇椅鞋条件下,第一趾、2-5趾、前脚掌远端和近端的足底压力均显著降低。与中半径和大半径相比,小半径摇椅鞋的第一趾和2-5趾的足底压力显著更低。对于前脚掌远端,与大半径相比,小半径和中半径均显著降低了足底压力。与高纵向弯曲刚度相比,低纵向弯曲刚度在第一趾处显著降低了足底压力,且与摇椅半径无关。与低纵向弯曲刚度相比,高纵向弯曲刚度下前脚掌远端和2-5趾的足底压力更低。

结论

操纵摇椅半径和纵向弯曲刚度可有效降低步态期间前脚掌区域的足底峰值压力。与先前的研究一致,我们表明,根据减轻压力的确切目标位置,需要采用不同的摇椅半径和纵向弯曲刚度组合,以最大化治疗效果。

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