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Dynamic virtual simulation of the occurrence and severity of edge loading in hip replacements associated with variation in the rotational and translational surgical position

机译:动态虚拟模拟髋关节置换中边缘负荷的发生和严重程度与旋转和平移手术位置的变化相关

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摘要

Variation in the surgical positioning of total hip replacement can result in edge loading of the femoral head on the rim of the acetabular cup. Previous work has reported the effect of edge loading on the wear of hip replacement bearings with a fixed level of dynamic biomechanical hip separation. Variations in both rotational and translational surgical positioning of the hip joint replacement combine to influence both the biomechanics and the tribology including the severity of edge loading, the amount of dynamic separation, the force acting on the rim of the cup and the resultant wear and torque acting on the cup. In this study, a virtual model of a hip joint simulator has been developed to predict the effect of variations in some surgical positioning (inclination and medial-lateral offset) on the level of dynamic separation and the contact force of the head acting on the rim as a measure of severity of edge loading. The level of dynamic separation and force acting on the rim increased with increased translational mismatch between the centres of the femoral head and the acetabular cup from 0 to 4 mm and with increased cup inclination angle from 45° to 65°. The virtual model closely replicated the dynamics of the experimental hip simulator previously reported, which showed similar dynamic biomechanical trends, with the highest level of separation being found with a mismatch of 4 mm between the centres of the femoral head and acetabular cup and 65° cup inclination angle.
机译:全髋关节置换术手术位置的变化可能导致股骨头的边缘负载在髋臼杯的边缘上。先前的工作已经报道了边缘载荷对固定水平动态生物力学髋分离的髋关节置换轴承磨损的影响。髋关节置换术的旋转和平移外科手术位置的变化共同影响了生物力学和摩擦学,包括边缘负荷的严重程度,动态分离的量,作用在杯缘上的力以及由此产生的磨损和扭矩在杯子上表演。在这项研究中,已经开发了髋关节模拟器的虚拟模型,以预测某些手术位置(倾斜度和内侧-外侧偏移)的变化对动态分离水平和头部作用于边缘的接触力的影响作为边缘负载严重程度的度量。随着股骨头和髋臼杯中心之间的平移不匹配从0到4mm增大,并且杯倾斜角从45°增大到65°,动态分离和作用在边缘上的力也增加了。该虚拟模型紧密复制了先前报道的实验性髋关节模拟器的动力学,该动力学显示了相似的动态生物力学趋势,发现最高水平的分离,股骨头与髋臼杯中心和65°杯中心之间的错位为4mm。倾角。

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