Beverland D E, Kernohan W G, Nixon J R, Orr J F, Watson P
Musgrave Park Hospital, Belfast.
Proc Inst Mech Eng H. 1993;207(1):19-23. doi: 10.1243/PIME_PROC_1993_207_264_02.
Custom acetabular components are proposed to achieve uniform cement mantles, even in irregular acetabula presented at revision, in order to enhance fixation. One aim of developing custom components was to permit pressurization of bone cement by the components at insertion and maintain the pressure during polymerization. A model acetabulum was set up for the insertion of standard, flanged and custom components under constant force. Cement pressure was measured at the floor of the acetabulum by means of a piezoelectric diaphragm transducer. Polythene tubes were inserted in the model acetabular walls to estimate penetration of cement into cancellous bone. Insertion of the standard and flanged components caused cement pressures up to 106 kPa which decayed to less than 21 kPa as cement escaped at the rim and the components came into contact with the acetabulum. The custom component maintained a pressure of over 60 kPa during polymerization from an initial pressure of 105 kPa and examination of cement mantles on removal showed no evidence of contact. The custom component also showed enhanced penetration of cement, especially around the rim of the acetabulum. It is concluded that the custom component design achieves higher cement pressures and that better fixation will result.
定制髋臼部件被提议用于实现均匀的骨水泥套,即使在翻修时出现的不规则髋臼中,以增强固定效果。开发定制部件的一个目的是在插入时通过部件对骨水泥进行加压,并在聚合过程中保持压力。建立了一个模型髋臼,用于在恒定力下插入标准部件、带凸缘部件和定制部件。通过压电膜片式传感器在髋臼底部测量骨水泥压力。在模型髋臼壁中插入聚乙烯管,以评估骨水泥向松质骨的渗透情况。插入标准部件和带凸缘部件时会产生高达106 kPa的骨水泥压力,随着骨水泥从边缘溢出且部件与髋臼接触,压力会衰减至小于21 kPa。定制部件在聚合过程中从初始压力105 kPa维持了超过60 kPa的压力,并且在取出时检查骨水泥套未发现接触迹象。定制部件还显示出骨水泥的渗透增强,尤其是在髋臼边缘周围。结论是,定制部件设计可实现更高的骨水泥压力,并将带来更好的固定效果。