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Contributions of non-spherical hip joint cartilage surface to hip joint contact stress

机译:非球形髋关节软骨表面对髋关节接触应力的贡献

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The natural non-spherical incongruent hip joint cartilage surface is normally assumed as spherical in shape, which has been extensively applied in orthopedic clinic, hip joint simulation studies and hip joint prosthesis design. The aim of the study was to investigate the contributions of non-spherical incongruent hip joint cartilage surface to the hip joint contact stress, and to assess the effect of simplified spherical assumption on the predicted contact stress. Based on our previous anatomic studies that the acetabular cartilage surface was demonstrated as rotational ellipsoid in shape, three finite element (FE) models involving the natural hip joint cartilage shape, the hip joint cartilage shape replaced by the rotational ellipsoid and the sphere, respectively, were developed using the computed tomography (CT) image data of healthy volunteers. The FE predictions of contact stress on the replaced hip joint cartilage surface were compared with that on the natural hip joint cartilage surface. The result showed that the non-spherical hip joint cartilage surface contributed to the optimal contact stress magnitude and distribution. The replaced fitting spherical surface led to the increased contact stress of hip joint and the uneven distributed patterns of contact stress, whereas the replaced fitting rotational ellipsoid surface was comparatively more consistent with the natural results than the sphere one. The surface fitting error of the replaced rotational ellipsoid was fewer than that of the replaced sphere. These results indicate that the simplified spherical assumption will lead to misestimating the contact mechanics of hip joint, and the rotational ellipsoid model rather than the sphere model may represent the hip joint contact surface applied in the hip joint simulation study and the hip joint prosthesis design.
机译:天然的非球形不一致的髋关节软骨表面通常假定为球形,已广泛应用于骨科诊所,髋关节模拟研究和髋关节假体设计。该研究的目的是研究非球形不一致的髋关节软骨表面对髋关节接触应力的贡献,并评估简化的球形假设对预测的接触应力的影响。根据我们先前的解剖学研究,髋臼软骨表面被证明为旋转椭球体形状,涉及自然髋关节软骨形状,髋关节软骨形状分别由旋转椭球体和球体代替的三个有限元(FE)模型,使用健康志愿者的计算机断层扫描(CT)图像数据进行开发。比较了髋关节软骨置换表面和自然髋关节软骨接触应力的有限元预测。结果表明,非球形髋关节软骨表面有助于最佳的接触应力大小和分布。替换的拟合球面导致髋关节的接触应力增加,接触应力的分布方式不均匀,而替换的拟合旋转椭球面与球体相比更符合自然结果。替换的旋转椭球的表面拟合误差小于替换的球体的表面拟合误差。这些结果表明,简化的球形假设将导致对髋关节接触力学的错误估计,并且旋转椭圆体模型而非球形模型可能代表了髋关节接触表面在髋关节仿真研究和髋关节假体设计中的应用。

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