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在模拟腐蚀条件下,髋关节置换术中股骨头与股骨柄连接处微动磨损的发生受股骨头材料和耳轴设计的影响。

The onset of fretting at the head-stem connection in hip arthroplasty is affected by head material and trunnion design under simulated corrosion conditions.

作者信息

Rowan Fiachra E, Wach Amanda, Wright Timothy M, Padgett Douglas E

机构信息

Adult Reconstruction and Joint Replacement, Hospital for Special Surgery, 535 East 70th Street, New York, 10021, New York.

Department of Biomechanics, Hospital for Special Surgery, New York, New York.

出版信息

J Orthop Res. 2018 Jun;36(6):1630-1636. doi: 10.1002/jor.23813. Epub 2018 Jan 10.

Abstract

Mechanically assisted crevice corrosion (MACC) is a mechanism for trunnion damage in total hip arthroplasties (THAs). Retrieval studies have shown reduced MACC-related damage for ceramic heads compared with cobalt-chromium (CoCr) heads. We propose that ceramic heads demonstrate fretting at higher cyclic compressive loads than CoCr heads on titanium alloy trunnions in a simulated corrosion model. A closed electrochemical chamber was used to measure fretting current onset loads for two modern titanium alloy trunnions (Zimmer 12/14 and Stryker V-40) in which trunnion failure has been reported. Ceramic and CoCr alloy 36 + 0 mm heads were impacted on each trunnion and cyclically loaded at 3 Hz with increasing magnitude from 100 to 3,400 N for 540 cycles. Onset load was the cyclic compressive load at which the slope of the average fretting current increased significantly. A CoCr head with V40 trunnion demonstrated the lowest onset load (1,400 N), while the V40 trunnion with a ceramic head showed the highest onset load (2,200 N). Significant differences occurred in average fretting current between head materials for V40 trunnions (p < 0.001) at loads over 2,000 N. CoCr-12/14 and ceramic-12/14 couples demonstrated similar onset loads (2,000 N). All head-trunnion combinations showed cyclical fretting response to loading at 100 N. Head material composition was observed to increase fretting at the taper junction but the effect was taper geometry dependent. Using ceramic heads may reduce the phenomena of trunnion fretting and corrosion but the effect of both trunnion geometry and metallurgy warrants further investigation. Statement of clinical significance: Trunnion corrosion may occur with titanium alloy stems regardless of the head material used. © 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:1630-1636, 2018.

摘要

机械辅助缝隙腐蚀(MACC)是全髋关节置换术(THA)中轴颈损伤的一种机制。翻修研究表明,与钴铬(CoCr)股骨头相比,陶瓷股骨头的MACC相关损伤减少。我们提出,在模拟腐蚀模型中,陶瓷股骨头在钛合金轴颈上比CoCr股骨头在更高的循环压缩载荷下表现出微动磨损。使用一个封闭的电化学室来测量两种现代钛合金轴颈(捷迈12/14和史赛克V - 40)的微动磨损电流起始载荷,这两种轴颈都曾有过轴颈失效的报道。将陶瓷和CoCr合金36 + 0毫米的股骨头分别安装在每个轴颈上,并以3赫兹的频率循环加载,载荷大小从100牛增加到3400牛,持续540个循环。起始载荷是平均微动磨损电流斜率显著增加时的循环压缩载荷。带有V40轴颈的CoCr股骨头表现出最低的起始载荷(1400牛),而带有陶瓷股骨头的V40轴颈表现出最高的起始载荷(2200牛)。在超过2000牛的载荷下,V40轴颈的不同股骨头材料之间平均微动磨损电流存在显著差异(p < 0.001)。CoCr - 12/14和陶瓷 - 12/14组合表现出相似的起始载荷(2000牛)。所有股骨头 - 轴颈组合在100牛载荷下均表现出循环微动磨损响应。观察到股骨头材料成分会增加锥度连接处的微动磨损,但这种影响取决于锥度几何形状。使用陶瓷股骨头可能会减少轴颈微动磨损和腐蚀现象,但轴颈几何形状和冶金学的影响仍需进一步研究。临床意义声明:无论使用何种股骨头材料,钛合金柄都可能发生轴颈腐蚀。© 2017骨科研究协会。由威利期刊公司出版。《骨科研究杂志》36:1630 - 1636,2018年。

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