基于有限元模型的胫骨-跗骨关节生物力学分析:人体胫骨-跗骨关节的静态载荷模型

Tofan Doru-Alexandru, Tomoaia Gheorghe
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引用次数: 0

摘要

本文的目的是分析人体胫骨-跗骨关节在静载荷作用下的行为。胫骨-跗骨关节代表了小腿和足的垂直度之间的过渡区域。与距下关节和跗骨横关节一起,它是踝关节的重要组成部分。考虑到平均体重成年男性的解剖特征,建立了人体胫骨、腓骨和距骨的有限元模型。为了分析静载荷作用下胫骨-跗骨关节的行为,将上述构件置于垂直位置,并定义构件之间的关系。根据目前的文献和研究,应用人类皮质骨的生物力学特性(杨氏模量、密度和泊松比)。最终的组件承受均匀分布的压力为0,625 kg/cm2。位移、vonMisses应力和应变是选择的输出参数。用于获得相应结果的软件为SolidWorks®2014。了解胫骨-跗骨关节在静态和动态载荷下的生物力学行为对于制定踝关节创伤和骨折的客观治疗方案至关重要。
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Tibio-tarsal joint biomechanics analisys through Finite Element Modeling: A static loading model of the human tibio-tarsal joint
The purpose of this paper is to analyze the behavior of the human tibio-tarsal joint during static loading. The tibio-tarsal joint represents the transition area between the verticality of the calf and the foot. Along with the subtalar and transverse tarsal joints, it represents a crucial component of the ankle. A Finite Element Model (FEM) of the human tibia, fibula and talus was created, taking into consideration the anatomical characteristics of an average weight male adult. In order to analyze the behavior of the tibio-tarsal joint during static loading, the fore mentioned components were rendered in vertical position, and the relations between components were defined. The biomechanical properties (Young's Modulus, Density and Poisson's Ratio) of the human cortical bone were applied with regard to current literature and research. The resulting assembly was subjected to a uniformly distributed pressure of 0,625 kg/cm2. Displacement, vonMisses Stress and Strain were the selected output parameters. The software used to obtain the respective results was SolidWorks® 2014. Understanding the biomechanical behavior of the tibio-tarsal joint during static as well as dynamic loading is essential in order to formulate objective treatment solutions in case of ankle trauma and fracture.
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