Behrens Bernd-Arno, Helms Gabriele, Pösse Olaf, Nolte Ingo, Meyer-Lindenberg Andrea, Rittmann Pia, Windhagen Henning, Pressel Thomas
Institut für Umformtechnik und Umformmaschinen (IFUM), Leibniz Universität Hannover, Produktionstechnisches Zentrum Hannover (PZH), Garbsen, Deutschland.
Biomed Tech (Berl). 2006 Dec;51(5-6):367-70. doi: 10.1515/BMT.2006.071.
The implantation of a total hip prosthesis is an operation which is performed frequently due to advanced hip joint damage both in humans and in veterinary medicine in dogs. The long-term result of a hip prosthesis is mainly determined by aseptic loosening of the prosthesis; among other causes, abrasion particles of the tribological pairing are responsible for the loosening. For the analysis of the surface stresses with different tribological pairings, a finite element model was generated which was based on the CAD data of a commercial total hip prosthesis. After transmission of a physiological force in the components of the three tribological pairings ceramic/polyethylene, ceramic/ceramic and metal/polyethylene, stresses were calculated. Stresses in the ceramic/ceramic tribological pairings were conspicuously higher than in the other material pairings. In the future adapted prostheses have to be developed that ensure optimal friction and absorption characteristics of the components.
全髋关节假体植入手术在人类和兽医领域治疗犬类髋关节严重损伤时都经常进行。髋关节假体的长期效果主要取决于假体的无菌性松动;除其他原因外,摩擦副的磨损颗粒是导致松动的原因之一。为了分析不同摩擦副的表面应力,基于一种商用全髋关节假体的CAD数据生成了有限元模型。在向陶瓷/聚乙烯、陶瓷/陶瓷和金属/聚乙烯这三种摩擦副的部件施加生理力后,计算出了应力。陶瓷/陶瓷摩擦副中的应力明显高于其他材料配对中的应力。未来必须开发出适应性更强的假体,以确保部件具有最佳的摩擦和吸收特性。