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首页> 外文期刊>Journal of biomechanical engineering. >Biomechanical analysis of the three-dimensional foot structure during gait: a basic tool for clinical applications.
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Biomechanical analysis of the three-dimensional foot structure during gait: a basic tool for clinical applications.

机译:步态中三维足部结构的生物力学分析:临床应用的基本工具。

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摘要

A novel three-dimensional numerical model of the foot, incorporating, for the first time in the literature, realistic geometric and material properties of both skeletal and soft tissue components of the foot, was developed for biomechanical analysis of its structural behavior during gait. A system of experimental methods, integrating the optical Contact Pressure Display (CPD) method for plantar pressure measurements and a Digital Radiographic Fluoroscopy (DRF) instrument for acquisition of skeletal motion during gait, was also developed in this study and subsequently used to build the foot model and validate its predictions. Using a Finite Element solver, the stress distribution within the foot structure was obtained and regions of elevated stresses for six subphases of the stance (initial-contact, heel-strike, midstance, forefoot-contact, push-off, and toe-off) were located. For each of these subphases, the model was adapted according to the corresponding fluoroscopic data, skeletal dynamics, and active muscle force loading. Validation of the stress state was achieved by comparing model predictions of contact stress distribution with respective CPD measurements. The presently developed measurement and numerical analysis tools open new approaches for clinical applications, from simulation of the development mechanisms of common foot disorders to pre- and post-interventional evaluation of their treatment.
机译:建立了一种新颖的三维三维数值模型,该模型首次结合了脚部骨骼和软组织成分的实际几何和材料特性,用于对步态期间其结构行为进行生物力学分析。在这项研究中,还开发了一套实验方法系统,该系统将用于足底压力测量的光学接触压力显示(CPD)方法和用于步态期间骨骼运动获取的数字放射荧光透视(DRF)仪器相结合,随后用于构建脚建模并验证其预测。使用有限元求解器,可以获得脚部结构内的应力分布,并获得了该姿势的六个子阶段(初始接触,后跟撞击,中间姿势,前脚接触,下垂和脚趾分离)的应力增加区域被找到。对于这些子阶段中的每个子阶段,均根据相应的透视数据,骨骼动力学和主动肌肉力负荷对模型进行了调整。通过将接触应力分布的模型预测与相应的CPD测量值进行比较,可以实现应力状态的验证。当前开发的测量和数值分析工具为临床应用开辟了新的途径,从模拟常见脚部疾病的发展机制到介入治疗前后的评估。

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