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[骨水泥型全膝关节置换术]

[Cemented total knee arthroplasties].

作者信息

Mumme T, Marx R, Andereya S, Weber M, Müller-Rath R, Wirtz D C

机构信息

Orthopädie, Universitätsklinikum Aachen.

出版信息

Z Orthop Ihre Grenzgeb. 2006 May-Jun;144(3):281-8. doi: 10.1055/s-2006-933485.

Abstract

INTRODUCTION

The aseptic loosening of cemented total knee arthroplasties is still an unsolved problem. In this regard, the hydrolysis resistance in the metal-to-bone cement interface is of major importance.

MATERIAL AND METHODS

Cemented pre-treated tibia components coated by means of a silica/silane interlayer system of the model "Columbus PS" were dynamically loaded with the help of a knee-simulator similar to DIN ISO 14243. After loading, the components were microscopically analysed concerning debonding in the metal-to-bone cement interface as well as with regard to cement mantle defects. These data were matched with uncoated "Columbus PS" components. Unloaded coated and uncoated tibia components acted as a control.

RESULTS

In comparison with uncoated tibia components, the pre-treated and coated ones yielded a highly significant reduction of cement defects (p < 0.01) as well as a significant reduction of debonding in the metal-to-bone cement interface (p < 0.05).

CONCLUSION

By means of the silica/silane interlayer system for cemented tibia components, a hydrolytic debonding in the metal-to-bone cement interface with subsequent mechanical loosening and consecutive early cement mantle failure can be significantly reduced. This could lead to an increased long-term stability of the metal-to-bone cement compound with decreased aseptic loosening in clinical use.

摘要

引言

骨水泥型全膝关节置换术的无菌性松动仍是一个未解决的问题。在这方面,金属与骨水泥界面的耐水解性至关重要。

材料与方法

采用“哥伦布PS”模型的二氧化硅/硅烷中间层系统涂覆的骨水泥预处理胫骨组件,借助类似于DIN ISO 14243的膝关节模拟器进行动态加载。加载后,对组件进行显微镜分析,观察金属与骨水泥界面的脱粘情况以及骨水泥套缺陷。这些数据与未涂覆的“哥伦布PS”组件进行匹配。未加载的涂覆和未涂覆胫骨组件作为对照。

结果

与未涂覆的胫骨组件相比,预处理并涂覆的组件在骨水泥缺陷方面有极显著减少(p < 0.01),在金属与骨水泥界面的脱粘方面也有显著减少(p < 0.05)。

结论

通过用于骨水泥胫骨组件的二氧化硅/硅烷中间层系统,可显著减少金属与骨水泥界面的水解脱粘,以及随后的机械松动和连续早期骨水泥套失效。这可能会提高金属与骨水泥复合物的长期稳定性,减少临床使用中的无菌性松动。

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