Chao E Y, Chin H C, Stauffer R N
Department of Orthopaedics, Mayo Clinic/Mayo Foundation, Rochester, MN 55905.
Clin Orthop Relat Res. 1992 Dec(285):91-101.
Roentgenographic analysis showed that centrifugation significantly reduced the gross and regional porosity of the cement compared with hand-mixed controls in a simulated total hip arthroplasty model. Static failure test of the prosthetic system demonstrated that the centrifuged cement had significantly greater strength than the hand-mixed cement. Under low-cycle fatigue tests of the same composite models, there was a trend for the centrifuged cement to be stronger than the hand-mixed specimens, although statistically it was not significant. Thus, centrifugation can reduce porosity and significantly improve the static strength of cement in a simulated in vitro total hip replacement model. When cement is used, any possible improvement in the physical properties of bone cement should be considered.
X线分析表明,在模拟全髋关节置换模型中,与手工搅拌的对照组相比,离心显著降低了骨水泥的总体孔隙率和局部孔隙率。假体系统的静态失效测试表明,离心处理的骨水泥强度明显高于手工搅拌的骨水泥。在相同复合模型的低周疲劳试验中,尽管在统计学上不显著,但离心处理的骨水泥有比手工搅拌的试件更强的趋势。因此,在模拟体外全髋关节置换模型中,离心可降低孔隙率并显著提高骨水泥的静态强度。当使用骨水泥时,应考虑骨水泥物理性能的任何可能改善。