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The transport of wear particles in the prosthetic hip joint: A computational fluid dynamics investigation

机译:髋关节假体中磨损颗粒的运输:计算流体动力学研究

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摘要

The joint fluid mechanics and transport of wear particles in the prosthetic hip joint were analyzed for subluxation and flexion motion using computational fluid dynamics (CFD). The entire joint space including a moving capsule boundary was considered. It was found that particles suspended in the joint space are drawn into the joint gap between prosthesis cup and head during subluxation, which was also documented by Lundberg et al. (2007; Journal of Biomechanics 40, 1676-1685), however, wear particles remain in the joint gap. Wear particles leave the joint gap during flexion and can finally migrate to the proximal boundaries including the acetabular bone, where the particle deposition can cause osteolysis according to the established literature. Thus, the present study supports the theory of polyethylene wear particle induced osteolysis of the acetabular bone as a major factor in the loosening of hip prosthesis cups.
机译:使用计算流体力学(CFD)分析了人工髋关节的关节流体力学和磨损颗粒的运输,以进行半脱位和屈曲运动。考虑了包括活动囊边界在内的整个关节间隙。发现在半脱位过程中,悬浮在关节间隙中的颗粒被吸入假体杯和头部之间的关节间隙中,这也被Lundberg等人证明。 (2007; Journal of Biomechanics 40,1676-1685),但是,磨损颗粒保留在关节间隙中。根据屈指可数的文献,磨损的颗粒在屈曲过程中会离开关节间隙,最终会迁移至包括髋臼骨的近端边界,在此颗粒沉积会引起骨溶解。因此,本研究支持聚乙烯磨损颗粒引起的髋臼骨溶骨的理论,认为髋臼假体杯松动是主要因素。

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