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Computer-Aided Engineering Approach for Parametric Investigation of Locked Plating Systems Design

机译:锁定电镀系统设计参数研究的计算机辅助工程方法

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摘要

The present paper presents an integrated computer-aided engineering (CAE) approach combining digital imaging, solid modeling, robust design methodology, and finite element analysis in order to conduct a parametric investigation of the design of locked plating systems. The present study allows for understanding the contributions of different design parameters on the biomechanics and reliability of these systems. Furthermore, the present approach will lead to exploration of optimum design parameters that will result in robust system performance. Three-dimensional surface models of cortical and cancellous femoral bone were derived via digital computed tomography (CT) image processing techniques and a medical imaging analysis program. A nine orthogonal array matrix simulation (L9) was conducted using finite element methods to study the effects of the various design parameters on plate performance. The introduced technique was demonstrated and experimentally verified on a case study using a Smith & Nephew PERI-LOC distal femur locking plate and a Synthes Less Invasive Stabilization System (LISS).
机译:本文提出了一种集成的计算机辅助工程(CAE)方法,该方法将数字成像,实体建模,鲁棒的设计方法和有限元分析相结合,以便对锁定电镀系统的设计进行参数研究。本研究允许理解不同设计参数对这些系统的生物力学和可靠性的贡献。此外,本方法将导致探索最佳设计参数,这将导致鲁棒的系统性能。皮质和松质股骨的三维表面模型是通过数字计算机断层扫描(CT)图像处理技术和医学成像分析程序得出的。使用有限元方法进行了九个正交阵列矩阵模拟(L9),以研究各种设计参数对印版性能的影响。使用Smith&Nephew PERI-LOC股骨远端锁定板和Synthesless Invasive Stabilization System(LISS)进行案例研究,对引入的技术进行了演示和实验验证。

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