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首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >Prediction of shape and internal structure of the proximal femur using a modified level set method for structural topology optimisation
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Prediction of shape and internal structure of the proximal femur using a modified level set method for structural topology optimisation

机译:使用改进的水平集方法预测股骨近端的形状和内部结构,以进行结构拓扑优化

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摘要

A computational framework was developed to simulate the bone remodelling process as a structural topology optimisation problem. The mathematical formulation of the Level Set technique was extended and then implemented into a coronal plane model of the proximal femur to simulate the remodelling of internal structure and external geometry of bone into the optimal state. Results indicated that the proposed approach could reasonably mimic the major geometrical and material features of the natural bone. Simulation of the internal bone remodelling on the typical gross shape of the proximal femur, resulted in a density distribution pattern with good consistency with that of the natural bone. When both external and internal bone remodelling were simulated simultaneously, the initial rectangular design domain with a regularly distributed mass reduced gradually to an optimal state with external shape and internal structure similar to those of the natural proximal femur.
机译:开发了一个计算框架来模拟骨骼重塑过程,将其作为结构拓扑优化问题。扩展了“水平集”技术的数学公式,然后将其实施到股骨近端的冠状平面模型中,以模拟骨骼的内部结构和外部几何结构重塑为最佳状态。结果表明,所提出的方法可以合理地模仿天然骨的主要几何和材料特征。在股骨近端的典型总体形状上模拟内部骨骼的重塑,可以得到与天然骨骼具有良好一致性的密度分布模式。当同时模拟外部和内部骨骼重塑时,具有规则分布质量的初始矩形设计域逐渐减小到最佳状态,其外部形状和内部结构与自然股骨近端相似。

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