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Development of a new femoral component for patellofemoral prosthesis

机译:开发髌型假肢新股骨组分

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The purpose for this work was to analyze the structural effects of the implantation of contemporary patellofemoral prosthesis on femur cancellous bone. In fact, studies on the state of strain/stress on patellofemoral arthroplasty are still very limited. The influence of the geometry and rigidity of the bone-implant interface is discussed, applying the Finite Element Method. One of the major reasons for the failure of currently available knee implants is the stress shielding effect. In loading situations, the bone is less requested, so the rate of bone remodeling decreases. The results showed that elastic strain is lower on bone areas close to the studied models of patellofemoral prosthesis, on the period after the implantation. Later on, bone rupture by fatigue may also occur, due to high strain, particularly on the models with fixation pins for the prosthesis. Furthermore, contact analyses showed that stability is best promoted without fixation pins.
机译:这项工作的目的是分析当代Patelloformoral假体对股骨松散骨的植入结构效应。事实上,对髌椎间露关节成形术的应变/应力状态仍然非常有限。讨论了骨植入界面的几何和刚度的影响,施加有限元法。目前可用的膝关节植入物失败的主要原因之一是压力屏蔽效果。在加载情况下,请求骨骼较少,因此骨重塑率降低。结果表明,在植入后的时期,骨头区域靠近髌骨型假体的研究模型的弹性应变较低。后来,由于高菌株,也可能发生疲劳的骨破裂,特别是在具有假体的固定销的模型上。此外,接触分析表明,在没有固定销的情况下最好促进稳定性。

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