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首页> 外文期刊>Journal of Biomimetics, Biomaterials, and Tissue Engineering >Study on Influence of Implant Thickness and Fixation Position on Implant Stability using Finite Element Analysis
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Study on Influence of Implant Thickness and Fixation Position on Implant Stability using Finite Element Analysis

机译:种植体厚度和固定位置对种植体稳定性影响的有限元分析

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摘要

Patient anatomy specific orthopaedic implant design, fabrication and identification of the most suitable position to fix implants onto bone fractures are challenging problems for surgeons to overcome of the existing shortcomings of commercially available implants. In this work, a 3D finite element model of the left tibial bone of an adult male is developed from Computed Tomography scan images. Proximal tibial fracture type Bl (as per Association for the Study of Internal Fixation) is simulated on thebone model. A geometry specific implant is obtained in order to promote better bone ingrowths and uniform stress distribution, by extracting the surface features of the bone. Finite Element Analysis is performed to evaluate and compare the mechanical properties such as stress, strain and displacement of the bone and implant of four various thicknesses which are fixed at two different positions. The design objectives such as low stress and displacement combination is obtained through the antero-lateralposition with 1.8 mm implant thickness. Various material properties are assigned to cortical, cancellous, trabecular regions of the bone and to implants made up of titanium alloy. The results obtained from the Finite Element Analysis are used to evaluatethe stability and suitability of the implant for that particular fracture.
机译:患者解剖学上特定的整形外科植入物的设计,制造和最适合将植入物固定在骨折上的位置的确定对于外科医生而言是具有挑战性的问题,以克服市售植入物的现有缺点。在这项工作中,根据计算机断层扫描扫描图像开发了成年男性左胫骨的3D有限元模型。在骨模型上模拟胫骨近端骨折类型B1(根据内部固定研究协会)。通过提取骨骼的表面特征,获得特定几何形状的植入物,以促进更好的骨骼向内生长和均匀的应力分布。进行了有限元分析,以评估和比较机械特性,例如骨骼和四种固定在两个不同位置的厚度的植入物的应力,应变和位移。低应力和高位移组合等设计目标是通过采用前向外侧位置(厚度为1.8 mm)实现的。各种材料特性被分配给骨骼的皮质,松质,小梁区域以及钛合金制成的植入物。从有限元分析中获得的结果用于评估植入物对于该特定骨折的稳定性和适用性。

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