Bartlett Gavin E, Gill Harinderjit S, Murray David W, Beard David J
OOEC Nuffield Department of Orthopaedic Surgery, University of Oxford, Oxford, UK.
Acta Orthop. 2009 Apr;80(2):139-43. doi: 10.3109/17453670902947382.
Under physiological loads, debonded cemented femoral stems have been shown to move within their cement mantle and generate a fluid pump that may facilitate peri-prosthetic osteolysis by pressurizing fluid and circulating wear debris. The long-term physiological loading of rough and polished tapered stems in vitro has shown differences in performance, with greater interface pressures generated by the rough stems. In this study we investigated the individual effects of stem surface finish, degree of mantle wear, and mode of loading on the stem pump mechanism.
Rough and polished stems were loaded under different regimes in artificially worn cement mantles that permitted either 2 or 5 degrees of rotational stem movement, and the interface pressures were compared.
The pressures generated by the rough and polished stems were similar in either type of mantle. The pattern of pressure generation in the 2-degree mantles was similar to the pressures generated by rough stems after long-term loading, but the high posterior wall pressures fell and the tip pressures increased in the 5-degree mantles. The torsional loads were principal drivers of pressure generation in all areas of the interface other than the implant tip, where axial loading predominated.
Femoral stems with rotational instability under cyclic torsional loads generate elevated interface fluid pressures and flows independently of stem surface finish. The rough surface finish is only important in creating this instability in tapered stems.
在生理负荷下,脱粘的骨水泥型股骨柄已被证明会在其骨水泥套内移动,并产生一个流体泵,该泵可能通过对流体加压和循环磨损碎屑来促进假体周围骨溶解。体外对粗糙和抛光锥形柄进行长期生理负荷研究显示了性能差异,粗糙柄产生的界面压力更大。在本研究中,我们调查了柄表面光洁度、骨水泥套磨损程度和加载方式对柄泵机制的个体影响。
将粗糙和抛光的柄在人工磨损的骨水泥套内以不同方式加载,该骨水泥套允许柄进行2度或5度的旋转运动,并比较界面压力。
在两种类型的骨水泥套中,粗糙柄和抛光柄产生的压力相似。2度骨水泥套中压力产生模式与长期加载后粗糙柄产生的压力相似,但在5度骨水泥套中,后壁高压力下降,尖端压力增加。除植入物尖端轴向加载占主导外,扭转载荷是界面所有区域压力产生的主要驱动因素。
在循环扭转载荷下具有旋转不稳定性的股骨柄会产生升高的界面流体压力和流量,且与柄表面光洁度无关。粗糙的表面光洁度仅在导致锥形柄出现这种不稳定性方面很重要。