Liu Feng, Jin Zhongmin, Roberts P, Grigoris P
Institute of Medical and Biological Engineering, Department of Mechanical Engineering, University of Leeds, Leeds, UK.
Proc Inst Mech Eng H. 2006 Aug;220(6):695-704. doi: 10.1243/09544119JEIM172.
The main design features of metal-on-metal (MOM) hip resurfacing prostheses in promoting elastohydrodynamic lubrication were investigated in the present study, including the femoral head diameter, the clearance, and the cup wall thickness. Simplified conceptual models were developed, based on equivalent uniform wall thicknesses for both the cup and the head as well as the support materials representing bone and cement, and subsequently used for elastohydrodynamic lubrication analysis. Both typical first- and second-generation MOM hip resurfacing prostheses with different clearances and cup wall thicknesses were considered with a fixed large bearing diameter of 50 mm, as well as a 28 mm diameter MOM total hip replacement bearing for the purpose of comparison. The importance of the head diameter and the clearance in promoting elastohydrodynamic lubrication was confirmed. Furthermore, it was also predicted that a relatively thin acetabular cup in the more recently introduced second-generation MOM hip resurfacing prostheses would be capable of improving elastohydrodynamic lubrication even further.
本研究对金属对金属(MOM)髋关节表面置换假体促进弹流润滑的主要设计特征进行了研究,包括股骨头直径、间隙和髋臼杯壁厚度。基于髋臼杯和股骨头的等效均匀壁厚以及代表骨和骨水泥的支撑材料,建立了简化的概念模型,随后用于弹流润滑分析。考虑了具有不同间隙和髋臼杯壁厚度的典型第一代和第二代MOM髋关节表面置换假体,其固定大轴承直径为50mm,以及直径为28mm的MOM全髋关节置换轴承用于比较。证实了股骨头直径和间隙在促进弹流润滑方面的重要性。此外,还预测在最近推出的第二代MOM髋关节表面置换假体中,相对较薄的髋臼杯能够进一步改善弹流润滑。