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首页> 外文期刊>American Journal of Biochemistry and Biotechnology >Biofidel FEA Modeling of Customized Hybrid Biological Hip Joint Prostheses, Part I: Biomechanical Behavior of Implanted Femur
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Biofidel FEA Modeling of Customized Hybrid Biological Hip Joint Prostheses, Part I: Biomechanical Behavior of Implanted Femur

机译:定制的混合型生物髋关节假体的Biofidel FEA建模,第一部分:股骨植入的生物力学行为

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Biofidel femur Finite Element Models have been developed using specific combination of Computer Tomography segmentation and solid modeling software tools able to represent bone physiology and structural behavior. These biofidel Finite Element Models (FEM) is used to evaluate the modification of the physiological stress distribution in a prosthesized femur and to assess new design criteria for the development of biomimetic hybrid biological hip prostheses. The faithful models proposed allowed us to properly consider the not isotropic characteristics of the proximal epiphysis of the femur and for the isotropic behavior in diaphysis to explain the critical alterations of the stress distribution in a resected femur following the implantation of a traditional hip joint prostheses. It has been shown that a wide region of the femur diaphysis is completely shielded by the rigid prosthesis significantly altering the physiological stress distribution that should guaranty a healthy bone growth and regeneration.
机译:Biofidel股骨有限元模型是使用计算机断层扫描分割和能够代表骨骼生理和结构行为的实体建模软件工具的特定组合开发的。这些生物纤维有限元模型(FEM)用于评估假体股骨中生理应力分布的变化,并评估仿生混合生物髋关节假体开发的新设计标准。提出的忠实模型使我们能够适当考虑股骨近端骨not的非各向同性特征以及骨干的各向同性行为,以解释传统髋关节假体植入后股骨切应力分布的关键变化。已经显示,股骨干骨的大范围区域被刚性假体完全遮盖,从而显着改变了生理应力分布,从而保证了健康的骨骼生长和再生。

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