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Femoral Mechanical Response in Golfers with Total Hip or Hip Resurfacing Implants

机译:具有总臀部或髋关节Resurfacing植入物的高尔夫球手的股骨机械响应

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This work investigates the stress response in the femur bone which has been modified to accommodate either a total hip replacement or hip resurfacing implant when the hips are subjected to peak loads during a golf swing. The objective is to provide a quantitative comparison of the stress shielding effects of both systems in order to support orthopedic recommendations regarding hip replacement or resurfacing for golfers. The peak loads of a golf swing are determined by applying kinematic relationships and Euler's equations to the lead leg using lead knee and ground reaction force data taken from existing literature. These loads are then applied to 3D Finite Element (FE) static models for the unmodified femur, the femur with a total hip implant, and the femur with a hip resurfacing implant. The FE models predict that both implants will result in significant Von Mises stress reductions along closed paths on proximal and distal femoral transverse planes, compared to normal bone. The Von Mises stress response of the implant systems do not differ by more than 7% for peak or mean stress magnitudes and gradients. FE predictions therefore indicate that, along closed contours, the stress shielding effects from each system may not differ significantly.
机译:该工作研究了股骨骨中的应力响应,该股骨骨的应力响应被修饰,以在高尔夫挥杆期间臀部经受峰值负荷时容纳总髋关节置换或髋臼重新铺设植入物。目的是提供两个系统的应力屏蔽效应的定量比较,以支持关于髋关节替代或重新铺设高尔夫球手的整形建议。高尔夫挥杆的峰值负载通过使用来自现有文献中的引线和地反应力数据施加运动关系和欧拉方程来确定铅腿。然后将这些载荷应用于用于未修饰的股骨的3D有限元(Fe)静态模型,具有总臀部植入物的股骨,以及具有髋关节重叠植入物的股骨。 FE模型预测,与常规骨相比,两种植入物将导致沿着近端和远端股骨横向平面上的封闭路径产生显着的von。植入系统的von误差应激响应不会在峰值或平均应力幅度和梯度的7%以上。因此,FE预测表明,沿着封闭轮廓,每个系统的应力屏蔽效应可能不会显着差异。

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