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首页> 外文期刊>Journal of Biomechanics >Foot structure and knee joint kinetics during walking with and without wedged footwear insoles
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Foot structure and knee joint kinetics during walking with and without wedged footwear insoles

机译:脚踏结构和膝关节动力学在携带和没有楔形鞋类鞋垫期间

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摘要

The relationship between static foot structure characteristics and knee joint biomechanics during walking, or the biomechanical response to wedged insoles are currently unknown. In this study, 3D foot scanning, dual X-ray absorptiometry and gait analysis methods were used to determine structural parameters of the foot and assess their relation to knee joint loading and biomechanical response to wedged insoles in 30 patients with knee osteoarthritis. In multiple linear regression models, foot fat content, height of the medial longitudinal arch and static hind foot angle were not associated with the magnitude of the knee adduction moment (R-2 = 0.24, p = 0.060), knee adduction angular impulse (R-2 = 0.21, p = 0.099) or 3D resultant knee moment (R-2 = 0.23, p = 0.073) during gait. Furthermore, these foot structure parameters were not associated with the patients' biomechanical response to medial or lateral wedge footwear insoles (all p 0.01). These findings suggest that static foot structure is not associated with gait mechanics at the knee, and that static foot structure alone cannot be utilized to predict an individual's biomechanical response to wedged footwear insoles in patients with knee osteoarthritis. (C) 2018 Elsevier Ltd. All rights reserved.
机译:行走期间静脚结构特性和膝关节生物力学的关系,或对楔形鞋底的生物力学反应目前未知。在该研究中,3D扫描,双X射线吸收测定和步态分析方法用于确定脚的结构参数,并评估其与膝关节骨关节炎患者患者膝关节载荷和生物力学反应的关系。在多元线性回归模型中,脚脂肪含量,内侧纵向拱的高度和静电后足角度与膝关节内存时刻(R-2 = 0.24,P = 0.060),膝关节内脉冲(R -2 = 0.21,p = 0.099)或3D合成的膝关节(R-2 = 0.23,P = 0.073)在步态期间。此外,这些足部结构参数与患者的生物力学响应与内侧或横向楔形鞋垫(所有P <0.01)无关。这些发现表明,静态脚结构与膝盖的步态力学没有与步态力学相关联,并且单独的静止脚结构不能用于预测膝关节骨关节炎患者患有楔形鞋类鞋垫的个人的生物力学反应。 (c)2018年elestvier有限公司保留所有权利。

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