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Analysis of different bicruciate-retaining tibial prosthesis design using a three dimension finite element model

机译:使用三维有限元模型分析不同的保留胫骨假体的设计

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摘要

The recent interest in bicruciate-retaining prostheses has aimed to address the need for an implant that can mimic a natural knee. Arguments have always existed about survivorship, including loosening and subsidence, as well as tibial preparation in bicruciate-retaining tibial prostheses. The aim of this study was to investigate the biomechanics of a new modular design and other bicruciate-retaining designs using a three-dimensional finite element model under different load conditions to discover which prosthesis was more suitable. We also evaluated related parameters (the third principal stress, shear stress, micromotion, and von Mises stresses) to compare the characteristics of different bicruciate-retaining designs. The biomechanics of the bicruciate-retaining tibial prosthesis can be influenced by the style of the designed prosthesis and gait loading. The new modular design showed stability and moderated the third principal stress, leading to less shear stress and stress shield, suggesting that this type of design can avoid knee prosthesis loosening and subsidence. Therefore, the new design may be used as a more suitable prosthesis for future bicruciate-retaining implant application.
机译:最近对保留双尿酸盐假体的兴趣旨在解决对可模仿自然膝盖的植入物的需求。关于幸存者的争论一直存在,包括松弛和下陷,以及在保留双臼齿的胫骨假体中进行胫骨准备。这项研究的目的是使用三维有限元模型在不同载荷条件下研究新的模块化设计和其他双留着性设计的生物力学,以发现哪种假体更合适。我们还评估了相关参数(第三主应力​​,切应力,微动应力和冯·米塞斯应力),以比较不同的双柠檬酸盐保持设计的特征。保留双韧带的胫骨假体的生物力学会受到设计的假体样式和步态负荷的影响。新的模块化设计显示了稳定性并减轻了第三主应力​​,从而减少了剪应力和应力屏蔽,这表明这种设计可以避免膝盖假体松动和下沉。因此,新的设计可以用作更适合的假体,以用于将来的留存留白刺的植入物应用。

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