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髋关节表面置换术的骨水泥固定技术:一种实验室模型的建立

Cementing techniques for hip resurfacing arthroplasty: development of a laboratory model.

作者信息

Bitsch Rudi G, Loidolt Travis, Heisel Christian, Schmalzried Thomas P

机构信息

Stiftung Orthopädische Universitätsklinik, Schlierbacher Landstrasse 200A, 69118 Heidelberg, Germany.

出版信息

J Bone Joint Surg Am. 2008 Aug;90 Suppl 3:102-10. doi: 10.2106/JBJS.H.00622.

Abstract

BACKGROUND

Hip resurfacing is extremely technique-sensitive, yet scientific investigations into cementing techniques are lacking. In this study, we tested open-cell, reticulated, carbon-foam materials in comparison with paired human femoral heads to validate a laboratory cementing model for resurfacing arthroplasty.

METHODS

Paired human femoral heads prepared for resurfacing were compared with thirty and sixty-pore-per-inch fat-filled foam specimens. Two different cementing techniques were analyzed: manual application of high-viscosity cement, and half component-filling with low-viscosity cement. Real-time measurements were made of cement pressure and temperature. Cement penetration areas and depths were quantified.

RESULTS

We found no significant differences between the human femoral heads and the fat-filled thirty-pore-per-inch foam models in all measured variables (pressures at the top, chamfer and outer wall, temperature at the 5-mm and 15-mm subsurface). There was no significant difference in the cement penetration of the human femoral heads and the fat-filled thirty-pore-per-inch foam models. There were a number of significant differences between the human femoral heads and the sixty-pore-per-inch foam models with use of the low-viscosity cement technique. The differences between the cementing techniques were greater than those between the three materials for most of the measurements.

CONCLUSIONS

Fat-filling (to emulate bone marrow) of lower-density carbon foam more closely simulates the cement penetration resistance and thermal properties of human femoral heads than does the denser (unfilled) material. This model is sensitive to differences in cementing technique.

摘要

背景

髋关节表面置换术对技术极为敏感,但目前缺乏对骨水泥固定技术的科学研究。在本研究中,我们将开孔、网状碳泡沫材料与配对的人体股骨头进行比较,以验证一种用于表面置换关节成形术的实验室骨水泥固定模型。

方法

将准备用于表面置换的配对人体股骨头与每英寸30孔和60孔的填充脂肪泡沫标本进行比较。分析了两种不同的骨水泥固定技术:手动涂抹高粘度骨水泥,以及用低粘度骨水泥进行半组件填充。对骨水泥压力和温度进行实时测量。对骨水泥渗透面积和深度进行量化。

结果

我们发现,在所有测量变量(顶部、倒角和外壁压力,5毫米和15毫米次表面温度)方面,人体股骨头与每英寸30孔的填充脂肪泡沫模型之间没有显著差异。人体股骨头与每英寸30孔的填充脂肪泡沫模型在骨水泥渗透方面没有显著差异。在使用低粘度骨水泥技术时,人体股骨头与每英寸60孔的泡沫模型之间存在一些显著差异。在大多数测量中,骨水泥固定技术之间的差异大于三种材料之间的差异。

结论

与密度更高(未填充)的材料相比,对低密度碳泡沫进行脂肪填充(以模拟骨髓)能更紧密地模拟人体股骨头的骨水泥渗透阻力和热性能。该模型对骨水泥固定技术的差异敏感。

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