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Development of an internal bone remodelling theory and applications to some problems in orthopaedic biomechanics

机译:内部骨重塑理论的发展及其在骨科生物力学中的一些问题的应用

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摘要

Bone tissue is a porous, heterogeneous and anisotropic material, which adapts its mechanical properties depending of the local stress level. This evolutive behaviour of the bone is normally known as bone remodelling. In this work, a bone-remodelling theory, based on the principles of continuum damage mechanics, is presented. The corresponding mathematical formulation has been implemented in a finite element code in order to predict the bone response after implantation of a prosthesis or fixation. Although the present model is not based on experimental verification, the model predicts important qualitative experimental results, being still necessary to test against experimental/clinical work. The main aim of this paper has been, therefore, the qualitative study of the long-term bone evolution, especially of the human femur when different types of implants are employed. A comparative analysis between two widely used hip prostheses (the Exeter and the SHP), has been performed. We have also studied the treatment of proximal femoral fractures by means of extramedullary and intramedullary implants. [References: 30]
机译:骨组织是一种多孔的,异质的和各向异性的材料,它可以根据局部应力水平来适应其机械性能。骨骼的这种进化行为通常称为骨骼重塑。在这项工作中,提出了基于连续损伤力学原理的骨重塑理论。相应的数学公式已以有限元代码实现,以便预测假体或固定物植入后的骨骼反应。尽管当前模型不是基于实验验证,但是该模型预测了重要的定性实验结果,仍然需要进行实验/临床工作测试。因此,本文的主要目的是定性研究长期骨演化,尤其是当使用不同类型的植入物时人类股骨的演化。已对两种广泛使用的髋关节假体(Exeter和SHP)进行了比较分析。我们还研究了通过髓外和髓内植入物治疗股骨近端骨折的方法。 [参考:30]

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