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Finite Element Analysis on Tibia with Osteogenesis Imperfecta: The Influence of Incomplete Bone in Model Reconstruction

机译:成骨不全胫骨的有限元分析:不完全骨在模型重建中的影响

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Osteogenesis Imperfecta (OI) patients continuously experience bone fractures throughout their lifetime. To date, physicians still have difficulties to determine a suitable method to predict fractures. The paper aims to develop finite element (FE) model based on patient-specific computed tomography (CT) images for the purpose of determination of fracture risk. Three types of FE models have been developed using VOXELCON. The first tibia model was a complete tibia composed of epiphysis and diaphysis part of the bone. The second tibia model only include the diaphysis part of the bone which is the shaft. The final tibia model, composed of diaphysis, and a part of epiphysis of the bone which is the extension shaft. Each model uses the same Young's Modulus (19 GPa) and Poisson's ratio (0.3). The developed models were used for FE analysis using VOXELCON under various loadings, and then the results of the different models were compared. Geometry and volume of the models, and surface area of load applied on the models affect distribution of von Mises stress. All the stress values were judged by the fracture criteria, assumed at 115 MPa. It was found out patient is safe in the standing position. Conversely, jumping will cause fracture in the three types of FE models.
机译:成骨不全症(OI)患者在其一生中不断经历骨折。迄今为止,医师仍然难以确定预测骨折的合适方法。本文旨在基于患者特定的计算机断层扫描(CT)图像开发有限元(FE)模型,以确定骨折风险。使用VOXELCON已经开发了三种类型的有限元模型。第一个胫骨模型是由骨的骨physi和骨干部分组成的完整胫骨。第二个胫骨模型仅包括作为轴的骨骼的骨干部分。最终的胫骨模型,由骨干和骨骼的骨epi部分组成,即延伸轴。每个模型使用相同的杨氏模量(19 GPa)和泊松比(0.3)。将开发的模型用于在不同载荷下使用VOXELCON进行的有限元分析,然后比较不同模型的结果。模型的几何形状和体积以及施加在模型上的载荷的表面积会影响von Mises应力的分布。所有应力值均根据假定为115 MPa的断裂标准进行判断。发现病人站立时是安全的。相反,跳跃将导致三种类型的有限元模型破裂。

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