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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Effect of orthopedic implants on canine long bone compression stiffness: a combined experimental and computational approach
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Effect of orthopedic implants on canine long bone compression stiffness: a combined experimental and computational approach

机译:矫形植入物对犬长骨压缩刚度的影响:一种综合实验和计算方法

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摘要

Osteosynthesis for canine long bones is a complex process requiring knowledge of biology, surgical techniques and (bio)mechanical principles. Subject-specific finite element analysis constitutes a promising tool to evaluate the effect of surgical intervention on the global properties of a bone–implant construct, but suffers from a lack of validation. In this study, the biomechanical behavior of 10 canine humeri was compared before and after creation of a 10?mm bone defect stabilized with an eight-hole locking compression plate (Synthes~(?)) and two locking screws on each fragment. The response under compression of both intact and plated samples was measured experimentally and reproduced with a finite element model. The experimental stiffness ratio between plated and intact bone was equal to 0.39?±?0.06. A subject-specific finite element analysis including density-dependent elasto-plastic material properties for canine bone and automatic generation of orthopedic implants was then conducted to recover these experimental results. The stiffness of intact and plated samples could be predicted, with no significant differences with experimental data. The simulated stiffness ratio between plated and intact canine bone was equal to 0.43?±?0.03. This study constitutes a first step toward the building of a virtual database of pre-computed cases, aiming at helping the veterinary surgeons to make decisions regarding the most suited orthopedic solution for a given dog and a given fracture.
机译:犬类长骨的骨质合成是一种复杂的过程,需要了解生物学,手术技术和(BIO)机械原理。主题的有限元分析构成有希望的工具,以评估手术干预对骨植入构建体的全局性质的影响,但缺乏验证。在这项研究中,在使用八孔锁定压缩板(合成〜(α))和两个锁定螺钉上稳定在稳定10μm的骨缺陷之前和之后,将10个犬Humeri的生物力学行为进行比较。通过实验和用有限元模型测量完整和电镀样品的压缩下的响应。电镀和完整骨之间的实验刚度比等于0.39?±0.06。然后进行了特定于犬骨的密度的弹性塑料材料特性的特异性有限元分析,然后进行了含有犬骨的自动产生的胚胎植入物,以恢复这些实验结果。可以预测完整和镀晶样品的刚度,与实验数据没有显着差异。电镀和完整的犬骨之间的模拟刚度比等于0.43≤0.03。本研究构成了朝向预先计算案例的虚拟数据库建立的第一步,旨在帮助兽医制作关于给定狗和给定骨折的最适合最适合整形溶液的决定。

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