Radin E L, Rubin C T, Thrasher E L, Lanyon L E, Crugnola A M, Schiller A S, Paul I L, Rose R M
J Bone Joint Surg Am. 1982 Oct;64(8):1188-200.
In order to study the temporal sequence of radiographic, histological, mechanical, bacteriological, and chemical changes around the femoral component following total hip replacement, a model was created by implanting plastic-on-metal total hip replacements in sheep and walking the animals on a concrete surface beginning six weeks postoperatively. This model demonstrated a decreased torsional rigidity between the prosthesis and the femoral cortex in all sheep. Failure of bonding occurred at the bone-cement interface and appears from our results to be most probably due to alterations in the functional stress of the proximal end of the femur following insertion of the femoral component rather than exothermic polymerization, toxicity of free monomer residue, or infection.
An understanding of the causes of loosening of cemented metal femoral components in total hip replacement has been thwarted by a lack of specimens at sequential times in the loosening process. Since a patient is not operated on until the prosthetic components are completely loose, such specimens are difficult to obtain clinically. For this reason a model for examining the bone-cement interface, measured by decreased torsional rigidity of the prosthesis relative to the bone, was developed in sheep. Of all the parameters studied, those inherent in the effects (mechanical or vascular, or both) of insertion of the prosthesis itself appeared to be the most likely cause of the change in the mechanical properties of the interface. This suggests that degenerative changes of the bone-cement interface may be inevitable.
为了研究全髋关节置换术后股骨部件周围放射学、组织学、力学、细菌学和化学变化的时间顺序,通过在绵羊体内植入塑料-金属全髋关节置换物并在术后六周开始让动物在混凝土表面行走来创建一个模型。该模型显示所有绵羊的假体与股骨皮质之间的扭转刚度均降低。骨水泥界面处发生粘结失败,从我们的结果来看,最可能是由于股骨部件植入后股骨近端功能应力的改变,而非放热聚合、游离单体残留的毒性或感染。
由于在松动过程中缺乏连续时间的标本,对全髋关节置换术中骨水泥固定金属股骨部件松动原因的理解受到阻碍。由于直到假体部件完全松动才对患者进行手术,因此临床上很难获得此类标本。出于这个原因,在绵羊身上建立了一个通过测量假体相对于骨骼的扭转刚度降低来检查骨水泥界面的模型。在所有研究的参数中,假体植入本身的影响(机械或血管,或两者兼有)所固有的参数似乎是界面力学性能变化的最可能原因。这表明骨水泥界面的退行性变化可能是不可避免的。