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股骨骨髓腔预冷可增强骨水泥-假体界面的剪切强度并降低聚合温度。

Precooling of the femoral canal enhances shear strength at the cement-prosthesis interface and reduces the polymerization temperature.

作者信息

Hsieh Pang-Hsin, Tai Ching-Lung, Chang Yu-Han, Lee Mel S, Shih Hsin-Nung, Shih Chun-Hsiung

机构信息

Department of Orthopedics, Chang Gung Memorial Hospital, Kweishan, Taoyuan, Taiwan.

出版信息

J Orthop Res. 2006 Sep;24(9):1809-14. doi: 10.1002/jor.20242.

Abstract

Preheating of the femoral stem in total hip arthroplasty improves the cement-prosthesis bond by decreasing the interfacial porosity. The main concern, however, is the potential thermal osteonecrosis because of an increased polymerization temperature. In this study, the effects of femoral canal precooling on the characteristics of the cement-stem interface were evaluated in an experimental model for three test conditions: precooling of the femoral canal, preheating of the stem (44 degrees C), and a control in which stems were inserted at room temperature without thermal manipulation of the implant, cement, or bone. Compared to the control group, precooling of the femoral canal and preheating of the stem had similar effects on the cement-stem interface, with greater interfacial shear strength and a reduced porosity. Femoral canal precooling also produced a lower temperature at the cement-bone interface. No difference was found in the ultimate compressive strength of bone cement for the three preparation conditions. Based on this laboratory model, precooling of the femoral canal could improve shear strength and porosity at the stem-cement interface, minimize thermal injury, and maintain the mechanical strength of the cement.

摘要

全髋关节置换术中股骨柄预热通过减少界面孔隙率来改善骨水泥与假体的结合。然而,主要担忧的是聚合温度升高可能导致热缺血性坏死。在本研究中,在一个实验模型中评估了三种测试条件下股骨髓腔预冷对骨水泥-柄界面特性的影响:股骨髓腔预冷、柄预热(44摄氏度)以及一个对照组,在该对照组中,柄在室温下插入,不对植入物、骨水泥或骨骼进行热操作。与对照组相比,股骨髓腔预冷和柄预热对骨水泥-柄界面具有相似的影响,界面剪切强度更高且孔隙率降低。股骨髓腔预冷还使骨水泥-骨界面处的温度更低。三种制备条件下骨水泥的极限抗压强度未发现差异。基于此实验室模型,股骨髓腔预冷可改善柄-骨水泥界面的剪切强度和孔隙率,使热损伤最小化,并保持骨水泥的机械强度。

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