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Reduction of Stress Distribution in Dysplastic Hip Joint by Varying the Femoral Ante version Angle

机译:通过改变股骨杆版角度消化髋关节应力分布的降低

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Residual hip dysplasia is the biggest cause of osteoarthrosis and its treatment in young people and adults often requires surgery. We propose a customized virtual surgery scenario to estimate the stress distribution on the hip joint, considering the planned operative procedure, and different articular rotations to change the femoral anteversion angle. We simulated the stance phase of a gait cycle using finite elements analysis on a three dimensional model constructed from computerized tomography images of a patient with residual dysplasia. The maximum effective stress post-operative over the femoral head was reduced by 20.2% and the contact pressure over the femoral articular cartilage by 42% at the point of greatest load in the gait cycle. We rotated the femoral anteversion angle from 40° to 10°, finding a better biomechanical response between 12° and 16°. The results indicated an excessive load over the pathological joint and an important reduction of the maximum stress over the post-operative model as an outcome of the joint relocation.
机译:残留的髋关节发育不良是骨关节炎的最大原因,其在年轻人和成年人中的治疗通常需要手术。我们提出了一个定制的虚拟手术场景,估计对髋关节的应力分布,考虑到计划的手术方法,以及不同的关节旋转来改变股骨前倾角。我们使用有限元分析来模拟步态周期的立场阶段,从患有残留发育不良的患者的计算机层面图像构成的三维模型分析。在步态循环中最大负载下,股骨头术后术后术后的最大有效应力减少了20.2%,并在股骨关节软骨上的接触压力下降了42%。我们从40°到10°旋转股骨反向角,找到12°和16°之间的更好的生物力学响应。结果表明了病理关节的过度负荷,并且在术后模型上的最大应力的重要降低是关节重定位的结果。

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