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Experimental Observation of the Skeletal Adaptive Repair Mechanism and Bionic Topology Optimization Method

机译:骨骼自适应修复机理和仿生拓扑优化方法的实验观察

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摘要

Bone adaptive repair theory considers that the external load is the direct source of bone remodeling; bone achieves its maintenance by remodeling some microscopic damages due to external load during the process. This paper firstly observes CT data from the whole self-repairing process in bone defects in rabbit femur. Experimental result shows that during self-repairing process there exists an interaction relationship between spongy bone and enamel bone volume changes of bone defect, that is when volume of spongy bone increases, enamel bone decreases, and when volume of spongy bone decreases, enamel bone increases. Secondly according to this feature a bone remodeling model based on cross-type reaction-diffusion system influenced by mechanical stress is proposed. Finally, this model coupled with finite element method by using the element adding and removing process is used to simulate the self-repairing process and engineering optimization problems by considering the idea of bionic topology optimization.
机译:骨适应性修复理论认为外部负荷是骨重塑的直接来源;通过在该过程中重塑外部负载来改造一些显微损坏来实现其维护。本文首先从兔股骨骨缺陷中的整个自修复过程中观察到CT数据。实验结果表明,在自修复过程中,海绵状骨与骨缺损的牙髓骨骼体积变化之间存在相互作用关系,即海绵骨的体积增加,釉质骨减小,并且当海绵骨的体积减小时,搪瓷骨增加。其次,根据该特征,提出了一种基于受机械应力影响的跨型反作用扩散系统的骨重塑模型。最后,通过使用元素添加和去除过程与有限元方法耦合的该模型用于通过考虑仿生拓扑优化的思想来模拟自修复过程和工程优化问题。

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