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Modeling of fractured clavicles and reconstruction plates using CAD, finite element analysis and real musculoskeletal forces input

机译:使用CAD的裂缝克拉期和重建板材建模,有限元分析和真正的肌肉骨骼力输入

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This study focuses on the treatment options for clavicle fractures, more specifically the cases with a need for internal fixation: non-unions and some complex fractures. Enhancing the understanding of the loading of the bone and fixation device enables treatment options to be improved. The aim of the study was to develop a method for the realistic simulation of stresses and displacements in the bone and fixation device and to use this method to make comparisons between a conventional reconstruction plate and a customized plate, designed from patient-specific computed tomography (CT) data. In an earlier study, a finite element (FE) mesh of the clavicle geometry was created from CT data, subjected to muscle forces and other boundary conditions from a multibody musculoskeletal model and imported into the FE solver. In this study, a solid 3D model of the same clavicle geometry was created and the mesh was replaced by the solid model to make the FE-model more suitable for the comparison of different plates. An LCP Reco-Plate 3.5 straight, 6 holes (by Synthes) was compared with a customized plate which was designed to follow the anatomy of the bone. The LCP-Reco plate has tapered reconstruction segments throughout the plate to allow for the plate reshaping during surgery. The customized plate was designed without such segments and with a lower width than the LCP plate. The two different plates showed stresses and displacements of similar magnitudes. The customized plate had a more even stress distribution while the LCP plate had higher stress concentrations in the middle of the plate and on the edges of the tapered reconstruction segments. To the authors' best knowledge, this is the first FE model of a clavicle bone with plate and it may, upon further development, serve as a useful instrument for improved clavicle fixation.
机译:本研究重点介绍锁骨骨折的治疗方案,更具体地说,需要内固定的病例:非工会和一些复杂的骨折。增强对骨骼和固定装置的装载的理解,可以改善治疗方案。该研究的目的是开发一种方法,用于制造骨骼和固定装置中的应力和位移的现实模拟,并使用该方法在传统的重建板和定制的板之间进行比较,这些方法由患者特定的计算机断层扫描设计( CT)数据。在早期的研究中,从CT数据产生锁骨几何形状的有限元(Fe)网,从多体肌肉骨骼模型中受到肌肉力和其他边界条件,并进口到FE求解器。在该研究中,创建的相同锁骨几何形状的固体3D模型和网孔是由实体模型以使FE-模型更适合于不同的板的比较代替。将LCP Reco-Plate 3.5直线,6个孔(通过合成)与定制板进行比较,设计用于遵循骨的解剖结构。 LCP-Reco板在整个板上具有锥形的重建段,以允许在手术期间重塑板。设计的板设计而没有这样的段,宽度低于LCP板。两块不同的板显示出相似幅度的应力和位移。定制板具有更均匀的应力分布,而LCP板在板的中间具有更高的应力浓度,并且在锥形重建段的边缘上具有更高的应力浓度。对于作者的最佳知识,这是锁骨骨骨的第一款,在进一步发展时,它可以作为改善锁骨固定的有用仪器。

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