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Failure location prediction by finite element analysis for an additive manufactured mandible implant

机译:通过有限元分析对添加的下颌骨植入物进行失效位置预测

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摘要

In order to reconstruct a patient with a bone defect in the mandible, a porous scaffold attached to a plate, both in a titanium alloy, was designed and manufactured using additive manufacturing. Regrettably, the implant fractured in vivo several months after surgery. The aim of this study was to investigate the failure of the implant and show a way of predicting the mechanical properties of the implant before surgery. All computed tomography data of the patient were preprocessed to remove metallic artefacts with metal deletion technique before mandible geometry reconstruction. The three-dimensional geometry of the patient's mandible was also reconstructed, and the implant was fixed to the bone model with screws in Mimics medical imaging software. A finite element model was established from the assembly of the mandible and the implant to study stresses developed during mastication. The stress distribution in the load-bearing plate was computed, and the location of main stress concentration in the plate was determined. Comparison between the fracture region and the location of the stress concentration shows that finite element analysis could serve as a tool for optimizing the design of mandible implants. (C) 2015 IPEM. Published by Elsevier Ltd. All rights reserved.
机译:为了重建下颌骨缺损的患者,使用增材制造技术设计并制造了一种钛合金固定在板上的多孔支架。遗憾的是,手术后几个月,植入物在体内破裂。这项研究的目的是调查植入物的失效情况,并展示一种预测手术前植入物机械性能的方法。患者的所有计算机断层扫描数据在下颌骨几何结构重建之前都经过了预处理,以去除金属伪影。还重建了患者下颌骨的三维几何形状,并使用Mimics医学成像软件中的螺钉将植入物固定到了骨骼模型上。通过下颌骨和植入物的组装建立有限元模型,以研究咀嚼过程中产生的应力。计算了承重板中的应力分布,并确定了板中主应力集中的位置。骨折部位和应力集中位置的比较表明,有限元分析可以作为优化下颌骨植入物设计的工具。 (C)2015年IPEM。由Elsevier Ltd.出版。保留所有权利。

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