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Predicting growth plate orientation with altered hip loading: potential cause of cam morphology

机译:用改变的髋关节载荷预测生长型板取向:凸起形态的潜在原因

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Proximal femoral deformities can result from altered hip joint loading patterns during growth. The growth plate hyaline cartilage has low resistance to shear stress. Therefore, we hypothesized that the growth plate orients in a direction which minimizes the shear stress on its surface. A finite element model of the proximal femur was generated with a simplified flat growth plate. Hip joint forces were estimated for standing upright and standing in hip flexion. We also parametrically studied the effects of posteriorly and laterally directed loads. An algorithm was developed to predict the shape of the femoral growth plate in a plane of minimum shear (along the principal stress vectors). To characterize and compare the growth plate shapes, we represented the distance from the growth plate to a reference plane as a two-dimensional contour plot, providing information of shape and orientation across the entire surface. We also assessed the clinical measures of growth plate shape to compare our predicted growth plates with previous clinical studies data. The shape of the growth plate predicted for an upright standing load correlated closely with morphological properties of the growth plane of a typically developing child. The shape of the growth plate predicted for femoral hip flexion force was similar to the growth plate in subjects with cam morphology, a hip shape that has documented growth plate changes. The model proposed here allows for investigation of the relation between joint forces and growth plate shape, which will help predict the development of bony deformities.
机译:近端股骨畸形可能是由于生长期间改变的髋关节负载模式而导致。生长板透明软骨具有低抗剪切应力的抗性。因此,我们假设生长板或者在最小化其表面上的剪切应力的方向上。用简化的平坦生长板产生近端股骨的有限元模型。估计髋关节部队直立并站立在髋部屈曲。我们还参数研究了后横向和横向定向载荷的影响。开发了一种算法以预测最小剪切平面中股骨生长板的形状(沿主应力矢量)。为了表征和比较生长板形状,我们将从生长板的距离表示为参考平面作为二维轮廓图,提供整个表面的形状和取向的信息。我们还评估了生长板形状的临床测量,将预测的生长板与先前的临床研究数据进行比较。预测直立载荷的生长板的形状与典型发展儿童的生长平面的形态学性质紧密相关。预测的股骨髋部屈曲力的生长板的形状与具有凸轮形态的受试者的生长板类似,髋部形状具有记录的生长板的变化。此处提出的模型允许对关节力和生长板形状的关系进行调查,这将有助于预测骨磁畸形的发展。

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