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Stress analysis in a bone fracture fixed with topology-optimised plates

机译:用拓扑优化板固定的骨折压力分析

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The design of commercially available fixation plates and the materials used for their fabrication lead to the plates being stiffer than bone. Consequently, commercial plates are prone to induce bone stress shielding. In this study, three-dimensional fixation plates are designed using topology optimisation aiming to reduce the risk of bone stress shielding. Fixation plate designs were optimised by minimising the strain energy for three levels of volume reduction (i.e. 25%, 45% and 75%). To evaluate stress shielding, changes in bone stress due to the different fixation plate designs were determined on the fracture plane of an idealised shaft of a long bone under a four-point bending load considering the effect of a patient walking with crutches of a transverse fractured tibia. Topology optimisation is a viable approach to design less stiff plates with adequate mechanical strength considering high volume reductions, which consequently increased the stress transferred to the bone fracture plane minimising bone stress shielding.
机译:商业上可获得的固定板的设计和用于其制造的材料导致板的逆时针更钝。因此,商业板易于诱导骨应力屏蔽。在这项研究中,三维固定板采用拓扑优化设计,旨在降低骨应力屏蔽的风险。通过最小化3水平的体积减少(即25%,45%和75%)来优化固定板设计。为了评估应力屏蔽,在考虑到患者与横向破裂的拐杖的拐杖的效果,在长骨的理想轴的裂缝平面上测定由于不同的固定板设计引起的骨应力的变化。胫骨。拓扑优化是一种可行的方法,可以设计具有足够的机械强度,考虑到高体积减少,因此增加了转移到骨骨折平面的应力最小化骨应力屏蔽。

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