首页> 外文期刊>International Orthopaedics >Optimisation of the posterior stabilised tibial post for greater femoral rollback after total knee arthroplasty--a finite element analysis.
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Optimisation of the posterior stabilised tibial post for greater femoral rollback after total knee arthroplasty--a finite element analysis.

机译:优化全膝关节置换术后股骨后退的后稳定胫骨柱-有限元分析。

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摘要

Femoral rollback after total knee arthroplasty (TKA) is necessary for flexion beyond 90-100 degrees. Femoral rollback in posterior cruciate substituting TKA occurs as a result of the interaction between the femoral cam and tibial post. The geometric design of the cam post mechanism determines the kinematics of rollback. The purpose of this study is to optimise the design of the femoral cam-tibial post articulation through finite element analysis and suggest various design parameters that would optimise femoral rollback. Modifications to the tibial post geometry without changing the relative post position or slope are made. Results are characterised in terms femoral rollback and pressure distribution at the tibial post. Small design modifications to the tibial post are seen to produce large changes in femoral rollback with relatively small accompanying increases in contact pressures at the tibial post.
机译:全膝关节置换术(TKA)后股骨回滚对于屈曲超过90-100度是必要的。股骨后凸和胫骨桩之间的相互作用会导致后十字交叉置换处的股骨回缩。凸轮柱机构的几何设计决定了后退的运动学。这项研究的目的是通过有限元分析来优化股骨胫后关节的设计,并提出可以优化股骨回滚的各种设计参数。在不改变相对柱位置或斜率的情况下,对胫骨柱的几何形状进行了修改。结果根据胫骨柱的股骨回缩和压力分布来表征。可以看到,对胫骨柱的微小设计修改会导致股骨后倾的较大变化,同时伴随着相对较小的胫骨柱接触压力增加。

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