Cementless implants have become widely used for total hip replacement surgery. The long-term stability of these implants is achieved by bone growing around and into the porous surface of the implant, a process called osseointegration. However, debonding of the bone-implant interface can still occur due to aseptic implant loosening and insufficient osseointegration, which may have dramatic consequences. The aim of this work is to describe a new 3D finite element frictional contact formulation for the debonding of partially osseointegrated implants. The contact model is based on a modified Coulomb's friction law (Immel et al. 2020, Biomech. Model. Mechanobiol.) that takes into account the tangential debonding of the bone-implant interface. This model is extended in the direction normal to the bone-implant interface by considering a cohesive zone model, to account for adhesion phenomena in the normal direction and for adhesive friction of partially bonded interfaces. The model is applied to simulate the debonding of an acetabular cup implant. The influence of partial osseointegration and adhesive effects on the long-term stability of the implant is assessed. The influence of different patient- and implant-specific parameters such as the friction coefficient, the trabecular Young's modulus and the interference fit is also analyzed, in order to determine the optimal stability for different configurations. Furthermore, this work provides guidelines for future experimental and computational studies, that are necessary for further parameter calibration.
翻译:无坚固的植入器已被广泛用于完全更换臀部的手术。这些植入器的长期稳定性是通过在植入器周围和在植入器的孔隙表面生长骨骼来实现的,这是一个称为骨质融合的过程。然而,骨质植入器接口的脱氧仍会发生,因为骨质植入器的松散和骨质融合不足,可能会产生巨大的后果。这项工作的目的是描述一种新的3D固定元素摩擦配方,用于部分骨质整合植入器脱落。接触模型的基础是修改的库伦摩擦法(Immmel et al.2020,Biemech.Model.Mechanobiol.),它考虑到骨质植入器接口的脱氧脱氧调,而骨质脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱脱