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模块化髋关节假体部件在混合及相似金属组合中的体内腐蚀。缝隙、应力、运动及合金耦合的影响。

In vivo corrosion of modular hip prosthesis components in mixed and similar metal combinations. The effect of crevice, stress, motion, and alloy coupling.

作者信息

Gilbert J L, Buckley C A, Jacobs J J

机构信息

Division of Biological Materials, Northwestern University, Chicago, IL 60611.

出版信息

J Biomed Mater Res. 1993 Dec;27(12):1533-44. doi: 10.1002/jbm.820271210.

Abstract

One hundred forty-eight retrieved modular hip prostheses of both mixed (Ti-6Al-4V/Co-Cr) and similar (Co-Cr/Co-Cr) metal combinations were examined and positive evidence of corrosive attack was found in the conical taper region between head and stem. Significant corrosion was observed in both mixed and similar metal combinations with 16% of necks and 35% of heads (for mixed-metal cases), and 14% of necks and 23% of heads (for similar-metal cases) showing moderate to severe corrosive attack. There was a significant correlation between the percentage of prostheses with moderate to severe corrosion and the duration of implantation for both mixed and similar metal cases, indicating that this corrosion process is progressive in time. Moderate to severe corrosion was seen as early as 2.5 and 11 months (mixed and similar metals, respectively). Scanning electron microscopy and x-ray analysis identified several forms of corrosive attack in the cobalt-based component of the taper. These included, for both mixed and same metal combinations: preferential dissolution of cobalt, fretting, and pitting; mixed metals only: the formation of a Ti-Cr-Mo interfacial phase and interdendritic corrosion; and for similar metals: intergranular attack adjacent to grain boundaries enriched in molybdenum and silicon. It is hypothesized that the restricted crevice environment, coupled with high cyclic stresses which cause repeated fracture of the passive oxide films in the taper, result in an unstable electrochemical environment within the crevice for both the cobalt alloy and Ti-alloy passive films. The passivity of these alloys is subsequently lost and active attack of the taper results. Also, the repeated fracturing of the passive films will result in large amounts of corrosion products being formed. This corrosion and particulate accumulation could result in loss of mechanical integrity of the implants in vivo, create particles for third body wear, and release particles into the surrounding tissues.

摘要

对148个回收的混合金属(钛-6铝-4钒/钴铬)和相似金属(钴铬/钴铬)组合的模块化髋关节假体进行了检查,发现在股骨头与股柄之间的锥形区域有腐蚀侵蚀的阳性证据。在混合金属和相似金属组合中均观察到显著腐蚀,在混合金属病例中,16%的颈部和35%的股骨头,以及在相似金属病例中,14%的颈部和23%的股骨头显示出中度至重度腐蚀侵蚀。对于混合金属和相似金属病例,中度至重度腐蚀的假体百分比与植入持续时间之间存在显著相关性,表明这种腐蚀过程随时间推移而进展。中度至重度腐蚀最早分别在2.5个月和11个月时出现(混合金属和相似金属)。扫描电子显微镜和X射线分析确定了锥形钴基部件中的几种腐蚀侵蚀形式。这些形式包括,对于混合金属和相同金属组合:钴的优先溶解、微动磨损和点蚀;仅混合金属:Ti-Cr-Mo界面相的形成和枝晶间腐蚀;对于相似金属:在富含钼和硅的晶界附近的晶间侵蚀。据推测,狭窄的缝隙环境,加上导致锥形区域中钝化氧化膜反复破裂的高循环应力,导致缝隙内钴合金和钛合金钝化膜的电化学环境不稳定。这些合金随后失去钝性,导致锥形区域发生活性侵蚀。此外,钝化膜的反复破裂将导致形成大量腐蚀产物。这种腐蚀和颗粒堆积可能导致体内植入物机械完整性丧失,产生用于三体磨损的颗粒,并将颗粒释放到周围组织中。

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