首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Modelling and simulation of alternative designs for the femur-implant interface of Journey patellofemoral prosthesis
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Modelling and simulation of alternative designs for the femur-implant interface of Journey patellofemoral prosthesis

机译:Journey em股假体的股骨-植入物界面替代设计的建模和仿真

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The implantation of conventional patellofemoral arthroplasty solutions has been identified as a source of later femur weakness, which is associated with bone resorption and stress-shielding effect. In this work, the Journey PFJ (R) arthroplasty system, of Smith & Nephew (UK), is investigated. The purpose is to evaluate the structural effects of different femoral components on the bone-implant interface. The finite element method is used to evaluate the influence of the geometry and stiffness of alternative implants, for post-implantation and long-term scenarios. Firstly, the original bone-femur interface of Journey PFJ (R), with four fixation pins, was modelled. Secondly, four alternative models were developed: (i) model with two pins; (ii) model without pins; (iii) model with new pin design; (iv) model with increased thickness. The behaviour of the five models was evaluated and compared. Validation against experimental data was also performed. Results showed that the elastic strain is two to three times lower on bone areas close to the pins, in the post-implantation scenario, which is most likely due to a stress-shielding effect. In a long-term scenario, bone rupture by fatigue may occur, associated with an increase in elastic strains. This effect is particularly noticed in the implants supported by fixation pins. In addition, contact analyses evidenced that implant stability is best promoted without fixation pins. Such outcomes suggest that the alternative implant without fixation pins on the bone-femur interface can improve the protection of the femur after patellofemoral arthroplasty, assuming good cement fixation throughout the implant's lifetime.
机译:常规pa股关节置换术的植入已被认为是后来股骨无力的根源,这与骨吸收和应力屏蔽作用有关。在这项工作中,研究了Smith&Nephew(英国)的Journey PFJ(R)关节置换系统。目的是评估不同股骨组件对骨-植入物界面的结构影响。对于植入后和长期使用的情况,有限元方法用于评估替代植入物的几何形状和刚度的影响。首先,对带有四个固定销的Journey PFJ(R)的原始股骨界面进行了建模。其次,开发了四个替代模型:(i)具有两个销钉的模型; (ii)不带别针的型号; (iii)具有新别针设计的模型; (iv)厚度增加的模型。评估并比较了五个模型的行为。还对实验数据进行了验证。结果表明,在植入后的情况下,靠近销的骨骼区域的弹性应变要低两到三倍,这很可能是由于应力屏蔽作用所致。在长期情况下,可能会由于疲劳而发生骨折,并伴有弹性应变的增加。这种效果在固定销支撑的植入物中特别明显。此外,接触分析表明,不使用固定销可以最好地提高植入物的稳定性。这样的结果表明,在of股关节置换术后,假设假牙在整个假体的整个生命周期中都保持良好的固定状态,那么在股骨股骨界面上没有固定销的替代假体可以改善对股骨的保护。

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