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In Silico Optimization of Femoral Fixator Position and Configuration by Parametric CAD Model

机译:参数化CAD模型在计算机上优化股骨固定器的位置和配置

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摘要

Structural analysis, based on the finite element method, and structural optimization, can help surgery planning or decrease the probability of fixator failure during bone healing. Structural optimization implies the creation of many finite element model instances, usually built using a computer-aided design (CAD) model of the bone-fixator assembly. The three most important features of such CAD models are: parameterization, robustness and bidirectional associativity with finite elements (FE) models. Their significance increases with the increase in the complexity of the modeled fixator. The aim of this study was to define an automated procedure for the configuration and placement of fixators used in the treatment of long bone fractures. Automated and robust positioning of the selfdynamisable internal fixator on the femur was achieved and sensitivity analysis of fixator stress on the change of major design parameters was performed. The application of the proposed methodology is considered to be beneficial in the preparation of CAD models for automated structural optimization procedures used in long bone fixation.
机译:基于有限元方法的结构分析和结构优化可以帮助进行手术计划或降低骨愈合过程中固定器失败的可能性。结构优化意味着创建许多有限元模型实例,这些实例通常是使用骨固定器组件的计算机辅助设计(CAD)模型构建的。这种CAD模型的三个最重要的特征是:参数化,鲁棒性和与有限元(FE)模型的双向关联。它们的重要性随着建模的固定器的复杂性的增加而增加。这项研究的目的是定义用于治疗长骨骨折的固定器的配置和放置的自动化程序。实现了可自我固定的内固定器在股骨上的自动和稳固定位,并对固定器应力对主要设计参数的变化进行了敏感性分析。所提出的方法论的应用被认为有利于准备用于长骨固定的自动结构优化程序的CAD模型。

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