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Three Dimensional Finite Element Modelling and Analysis of Human Knee Joint- Model Verification

机译:三维有限元建模与人膝关节模型验证分析

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Modelling a three dimensional (3D) model of a human knee joint by extracting the region of interest accurately is one of the main constraints. Oversimplified bone models from previous studies that could affect the accuracy of analyses have become current concerns. An approach to minimize the issue consisting of several steps were done. This study aim to analyse a more precise human knee joint model using finite element technique. Reconstruction of 3D knee models were done by segmenting Computed Tomography (CT) data of a healthy male. Cancellous and cortical bones were segmented based on the Hounsfield unit (HU). The model of knee consists of femur and tibia bones, cartilages and ligaments. Construction of cartilages were done by extracting and offsetting bone layers. Linear spring elements were used to model four ligaments at the knee joint. In order to verify the models, finite element analyses were carried out. Forces ranging between 100 until 1000 N were axially applied on the proximal femur. The results in this study were in an agreement with previous literature reports with maximum peak VMS of 2.928 MPa and 3.25 MPa respectively at articular cartilages. It can be concluded that the knee models were verified.
机译:通过精确提取感兴趣区域是主要约束之一来建立人膝部关节的三维(3D)模型。来自以前的研究的超薄骨模型可能影响分析准确性的研究已成为目前的担忧。最小化由几个步骤组成的问题的方法。本研究旨在使用有限元技术分析更精确的人膝部联合模型。通过分割健康男性的计算断层扫描(CT)数据来完成3D膝模型的重建。基于Hounsfield单元(Hu)分段进行松配和皮质骨骼。膝盖模型由股骨和胫骨骨骼,软骨和韧带组成。通过提取和抵消骨层来完成软骨的构建。线性弹簧元件用于在膝关节延伸四个韧带。为了验证模型,执行有限元分析。范围在100至1000n之间的力轴向施加在近端股骨上。该研究的结果与先前的文献报告协议,分别在关节软骨上分别具有2.928MPa和3.25MPa的最大峰值VM。可以得出结论,膝关型模型已被验证。

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