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A computational parametric study on edge loading in ceramic-on-ceramic total hip joint replacements

机译:陶瓷陶瓷总髋关节置换中边缘加载的计算参数研究

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Edge loading in ceramic-on-ceramic total hip joint replacement is an adverse condition that occurs as the result of a direct contact between the head and the cup rim. It has been associated with translational mismatch in the centres of rotation of the cup and head, and found to cause severe wear and early failure of the implants. Edge loading has been considered in particular in relation to dynamic separation of the cup and head centres during a gait cycle. Research has been carried out both experimentally and computationally to understand the mechanism including the influence of bearing component positioning on the occurrence and severity of edge loading. However, it is experimentally difficult to measure both the load magnitude and duration of edge loading as it occurs as a short impact within the tight space of hip joints. Computationally, a dynamic contact model, for example, developed using the MSC ADAMS software for a multi-body dynamics simulation can be particularly useful for calculating the loads and characterising the edge loading. The aim of the present study was to further develop the computational model, and improve the predictions of contact force and the understanding of mechanism in order to provide guidance on design and surgical factors to avoid or to reduce edge loading and wear. The results have shown that edge loading can be avoided for a low range of translational mismatch in the centres of rotation of the cup and head during gait at the level of approximately 1.0 mm for a cup at 45 degrees inclination, keeping a correct cup inclination at 45 degrees is important to reduce the edge loading severity, and edge loading can be avoided for a certain range of translational mismatch of the cup and head centres with an increased swing phase load.
机译:陶瓷上陶瓷总髋关节替换中的边缘装载是由于头部和杯子边缘之间的直接接触而发生的不利条件。它已经与杯子和头部旋转中心的翻译失配相关联,发现植入物的严重磨损和早期失效。边缘装载特别是在步态循环期间杯和头中心的动态分离。在实验和计算上进行了研究,以了解包括轴承部件定位对边缘装载的发生和严重程度的影响。然而,在实验难以测量边缘加载的负载幅度和持续时间,因为它发生在髋关节的紧密空间内的短碰撞。计算地,例如,使用MSC ADAMS软件为多体动态模拟开发的动态触点模型对于计算负载并表征边缘加载,可以特别适用。本研究的目的是进一步开发计算模型,并改善接触力的预测和对机制的理解,以便为设计和外科因素提供指导,以避免或减少边缘装载和磨损。结果表明,对于杯子的旋转中心,在45度倾斜的杯子的步态期间,可以避免在杯子的旋转中心中的低范围的平移失配,但是在45度倾斜的杯子的步态中,保持正确的杯子倾斜度降低边缘装载严重程度45度是重要的,并且可以避免边缘加载,用于杯子和头中心的一定范围的平移失配,随着摆动相位载荷的增加。

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