Liu Feng, Williams Sophie, Jin Zhongmin, Fisher John
Institute of Medical and Biological Engineering, School of Mechanical Engineering, University of Leeds, Leeds, UK.
Proc Inst Mech Eng H. 2013 Nov;227(11):1147-54. doi: 10.1177/0954411913496016. Epub 2013 Jul 25.
Head contact on the rim of the cup causes stress concentration and consequently increased wear. The head contact on the rim of the cup may in addition cause an offset load and torque on the cup. The head-rim contact resulting from microseparation or subluxation has been investigated. An analytical model has been developed to calculate the offset loading and resultant torque on the cup as a function of the translational displacement of the head under simplified loading condition of the hip joint at heel strike during a walking cycle. The magnitude of the torque on the cup was found to increase with the increasing translational displacement, larger diameter heads, eccentric cups, and the coefficient of friction of the contact. The effects of cup inclination, cup rim radius, and cup coverage angle on the magnitude of the torque were found to be relatively small with a maximum variation in the torque magnitude being lower than 20%. This study has shown an increased torque due to the head loading on the rim of the cup, and this may contribute to the incidence of cup loosening. Particularly, metal-on-metal hip joints with larger head diameters may produce the highest offset loading torque.
股骨头与髋臼杯边缘接触会导致应力集中,进而增加磨损。此外,股骨头与髋臼杯边缘接触可能会在髋臼杯上产生偏心载荷和扭矩。已经对微分离或半脱位导致的股骨头 - 髋臼杯边缘接触进行了研究。在步行周期足跟触地时髋关节简化加载条件下,开发了一个分析模型来计算髋臼杯上的偏心载荷和合成扭矩,该扭矩是股骨头平移位移的函数。研究发现,髋臼杯上的扭矩大小随着平移位移增加、股骨头直径增大、髋臼杯偏心以及接触摩擦系数的增加而增大。研究还发现,髋臼杯倾斜度、髋臼杯边缘半径和髋臼杯覆盖角度对扭矩大小的影响相对较小,扭矩大小的最大变化低于20%。这项研究表明,由于股骨头在髋臼杯边缘加载导致扭矩增加,这可能会导致髋臼杯松动的发生率增加。特别是,较大股骨头直径的金属对金属髋关节可能会产生最高的偏心加载扭矩。