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钛和不锈钢外科植入物的电偶组合是否应避免?

Should the galvanic combination of titanium and stainless steel surgical implants be avoided?

作者信息

Høl Paul Johan, Mølster Anders, Gjerdet Nils Roar

机构信息

Orthopedic Biomaterials, Helse Bergen Haukeland University Hospital, Aarstadveien 17, NO-5009 Bergen, Norway.

出版信息

Injury. 2008 Feb;39(2):161-9. doi: 10.1016/j.injury.2007.07.015. Epub 2007 Dec 3.

Abstract

It is recommended that one should not combine different metals in orthopaedic devices. The least noble metal in such a galvanic coupling is more likely to corrode. However, some studies have failed to show increased corrosion when titanium and stainless steel are combined. The aim of this study was to determine the fretting corrosion of the contact areas between screws and plates made of these dissimilar metals used for internal fixation of bone fractures. The plates were fixed to a bone-simulating material and subjected to tensile and compressive forces in both human serum and Hank's solution. The outcome variables included in the analyses were weight loss, and release of Ti, Cr, Ni and Mo to the different media. Results from the multiple combinations were subjected to multivariate statistics. Principal component analysis visualised our findings and allowed classification of similar samples and separation of discrepant groups of samples. We found a significant effect of the test medium, but no dramatic effect due to mixing of metals. The titanium screws and plates corroded more in serum than in saline, while the opposite was true for stainless steel. Combination of dissimilar screws and plates did not cause higher weight loss or metal release than the single-material constructions, indicating comparable clinical safety.

摘要

建议在骨科器械中不要将不同金属组合使用。在这种电偶耦合中最不活泼的金属更有可能被腐蚀。然而,一些研究未能表明钛和不锈钢组合时腐蚀会增加。本研究的目的是确定用于骨折内固定的由这些不同金属制成的螺钉和钢板之间接触区域的微动腐蚀情况。将钢板固定在骨模拟材料上,并在人血清和汉克溶液中施加拉伸和压缩力。分析中包括的结果变量有重量损失以及钛、铬、镍和钼向不同介质中的释放量。多种组合的结果进行了多变量统计分析。主成分分析直观展示了我们的研究结果,并允许对相似样本进行分类以及区分不同的样本组。我们发现测试介质有显著影响,但金属混合并未产生显著影响。钛螺钉和钢板在血清中的腐蚀比在盐水中更严重,而不锈钢则相反。不同螺钉和钢板的组合不会比单一材料结构导致更高的重量损失或金属释放,表明临床安全性相当。

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