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全髋关节置换术中不同磨损区域钴铬合金股骨头的摩擦学性能

Tribological property of the cobalt-chromium femoral head with different regions of wear in total hip arthroplasty.

作者信息

Duong C-T, Nam J-S, Seo E-M, Patro B P, Chang J-D, Park S, Lee S-S

机构信息

School of Mechanical Engineering, Pusan National University, Busan, Republic of Korea.

出版信息

Proc Inst Mech Eng H. 2010;224(4):541-9. doi: 10.1243/09544119JEIM709.

Abstract

The tribological properties of engineering and biological materials have been investigated at microscale levels through the calculation of the surface roughness and frictional coefficient using atomic force microscopy (AFM). Although a number of previous studies have reported the frictional coefficients of diverse bearing materials in total hip arthroplasty (THA), the relationship between the surface roughness and frictional coefficient of bearing materials of THA have not been reported, and furthermore, the tribological properties for different wear regions of a cobalt-chromium (Co-Cr) femoral head have not been well identified. Therefore, the objective of this study is to investigate the relationships between the surface roughness, frictional coefficient, and hardness for both the main-wear and the least-wear regions of a Co-Cr femoral head 10 years after THA. The average Vickers hardness of the Co-Cr femoral head was 380.7 +/- 11.3 HV. With the scanned area of 25 microm x 25 microm through AFM, the frictional coefficients of the main-wear and the least-wear regions were 0.229 +/- 0.054 and 0.243 +/- 0.059, respectively, and showed no statistical differences between these two regions (p = 0.449). However, differences in the surface roughness (Rq) between the main-wear region (Rq = 96.5 +/- 26.2 nm) and the least-wear region (Rq = 17.7 +/- 4.2 nm) were statistically significant (p < 0.0001). The results of the current study suggest that the frictional property of the Co-Cr femoral head is not significantly correlated with its surface roughness, and also provide guidelines for improving the surface characteristics of metallic implant materials.

摘要

通过使用原子力显微镜(AFM)计算表面粗糙度和摩擦系数,在微观尺度上研究了工程材料和生物材料的摩擦学特性。尽管先前有许多研究报道了全髋关节置换术(THA)中各种轴承材料的摩擦系数,但THA轴承材料的表面粗糙度与摩擦系数之间的关系尚未见报道,此外,钴铬(Co-Cr)股骨头不同磨损区域的摩擦学特性也尚未得到很好的确定。因此,本研究的目的是调查THA术后10年Co-Cr股骨头主要磨损区域和磨损最小区域的表面粗糙度、摩擦系数和硬度之间的关系。Co-Cr股骨头的平均维氏硬度为380.7±11.3 HV。通过AFM扫描25微米×25微米的区域,主要磨损区域和磨损最小区域的摩擦系数分别为0.229±0.054和0.243±0.059,这两个区域之间无统计学差异(p = 0.449)。然而,主要磨损区域(Rq = 96.5±26.2纳米)和磨损最小区域(Rq = 17.7±4.2纳米)之间的表面粗糙度(Rq)差异具有统计学意义(p < 0.0001)。本研究结果表明,Co-Cr股骨头的摩擦性能与其表面粗糙度无显著相关性,同时也为改善金属植入材料的表面特性提供了指导。

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