TY - EJOU AU - Chen, Xiaozhong AU - Mao, Zhijian TI - Shape Optimization of Orthopedic Fixation Plate Based on Static Stress Analysis T2 - Molecular \& Cellular Biomechanics PY - 2018 VL - 15 IS - 4 SN - 1556-5300 AB - Shape optimization of orthopedic fixation plate is of great importance in the treatment of complex fracture. Therefore, a method in this paper to automatically optimize the complex shape of anatomical plate according to static analysis. Based on the theory of finite element analysis (FEA), our approach is processed as follows. First, the three-dimensional finite element model of the fracture fixation is constructed. Next, according to the type and feature of fracture, the anatomical plate was parameterized in two levels (the bounding surface and plate model). Then, parameter constraints are set up to meet the needs of surgical fracture treatment. Finally, by using the theories combined with the method of moving asymptote (MMA) and gradient projection (GP), the plate model is modified automatically based on the principle of plate stress and segment offset minimization. Experimental results show that the displacement of femur segments and the stress of fracture site were decreased slightly and can improve the biomechanical environment around the fracture. KW - Shape optimization KW - fixation plate KW - static stress KW - feature parameterization DO - 10.32604/mcb.2018.03818