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Biomechanical behaviour of cancellous bone on patellofemoral arthroplasty with journey prosthesis : a finite element study

机译:journey骨股骨关节成形术伴行行假体的松质骨的生物力学行为:有限元研究

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摘要

Isolated patellofemoral (PF) arthritis of the knee is a common cause of anterior knee pain and disability. Patellofemoral arthroplasty (PFA) is a bone conserving solution for patients with PF degeneration. Failure mechanisms of PFA include growing tibiofemoral arthritis and loosening of components. The implant loosening can be associated with bone resorption, or fatigue-failure of bone by overload. This research work aims at determining the structural effects of the implantation of PF prosthesis Journey PFJ (Smith&Nephew, USA) on femur cancellous bone. For this purpose, the finite element (FE) method is considered to perform computational simulations for different conditions, such as well-fixed and loosening scenarios. From the global results obtained, in the well-fixed scenario, a strain decrease on cancellous bone was noticed, which can be related to bone resorption. In the loosening scenario, when the cement layer becomes inefficient, a significant increase of cancellous bone strain was observed, which can be associated with bone fatigue-failure. These strain changes suggest a weakness of the femur after PFA.
机译:膝部孤立的pa股(PF)关节炎是膝前疼痛和残疾的常见原因。 ello股关节置换术(PFA)是用于PF变性患者的骨保护解决方案。 PFA的失败机制包括胫股关节炎的发展和组件的松动。植入物松动可能与骨吸收或过载引起的骨疲劳失败有关。这项研究工作旨在确定PF假体Journey PFJ(Smith&Nephew,美国)植入股骨松质骨的结构效果。为此,考虑使用有限元(FE)方法针对不同条件(例如固定良好和松动的情况)执行计算模拟。从获得的整体结果来看,在固定的情况下,注意到松质骨的应变降低,这可能与骨吸收有关。在松动的情况下,当水泥层效率低下时,观察到松质骨应变显着增加,这可能与骨骼疲劳失败有关。这些应变变化提示PFA后股骨无力。

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