Schindler Oliver S
St Mary's Hospital, Bristol, England, UK.
Acta Orthop Belg. 2012 Feb;78(1):11-29.
Patellar and femoral component in total knee arthroplasty are inextricably linked as a functional unit. The configuration of this unit has been a matter of ongoing debate, and the myriad of different patellar and femoral components currently available reflect the lack of consensus with respect to the ideal design. One of the major challenges is to overcome the biomechanical disadvantages of a small contact area through which high contact pressures are transferred, making this mechanical construct the weakest part of the prosthetic knee. Contact areas are highly dependent on the congruency of the patellofemoral joint articulation, and are significantly smaller for dome shaped patellar components compared to those of more anatomic designs. However, when exposed to 3-dimensional movements, the contact areas of the dome shaped patella are significantly greater, indicating enhanced forgiveness regarding patellar malpositioning. Although contact stresses, a function of implant design and surface conformity, can reach levels far beyond the yield strength of UHMWPE, catastrophic failure of resurfaced patellar components, commonly seen in metal backed patellae, fashionable in the 1980s, has rarely been observed since. Although plastic deformation and wear of UHMWPE continue to represent a problem, in the absence of suitable alternatives polyethylene remains the bearing surface of choice. The appreciation of the consequences of the mechanical environment on the behaviour of the patellofemoral joint is of particular importance in the endeavour to develop knee replacement systems which provide satisfactory function together with clinical long-term success.
全膝关节置换术中的髌骨和股骨组件作为一个功能单元紧密相连。该单元的构型一直是一个持续争论的问题,目前市面上众多不同的髌骨和股骨组件反映出在理想设计方面缺乏共识。主要挑战之一是克服小接触面积带来的生物力学劣势,高接触压力通过该小接触面积传递,使得这个机械结构成为人工膝关节最薄弱的部分。接触面积高度依赖于髌股关节的吻合度,与解剖学设计的组件相比,穹顶形髌骨组件的接触面积明显更小。然而,当暴露于三维运动时,穹顶形髌骨的接触面积显著增大,这表明对髌骨位置不良的容错性增强。尽管接触应力(取决于植入物设计和表面贴合度)可达到远超超高分子量聚乙烯屈服强度的水平,但自20世纪80年代流行的金属背衬髌骨中常见的表面置换髌骨组件灾难性失效,此后很少被观察到。尽管超高分子量聚乙烯的塑性变形和磨损仍然是一个问题,但在没有合适替代物的情况下,聚乙烯仍然是首选的承重表面。认识机械环境对髌股关节行为的影响,对于开发能提供令人满意功能并取得临床长期成功的膝关节置换系统尤为重要。