首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Metal-on-metal vs. metal-on-polyethylene total hip arthroplasty tribological evaluation of retrieved components and perlprosthetlc tissue
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Metal-on-metal vs. metal-on-polyethylene total hip arthroplasty tribological evaluation of retrieved components and perlprosthetlc tissue

机译:金属对金属与聚乙烯对金属整体髋关节置换术的摩擦学评估

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Background and purpose: Metal-on-metal (MoM) bearings were introduced as an alternative to conventional metal-on-polyethylene (MoP) bearings to reduce the wear and to increase the survival of hip prostheses. The goal of the present study was to compare tribological properties and to evaluate periprosthetic tissue reaction in two identical groups of prostheses differing only in the type of bearings. Patients and methods: At revision operations 26 MoM and 12 MoP bearing components and perisprosthetic tissue samples were collected. Prosthetic components were used to assess wear damage, linear and volumetric wear and roughness. Periprosthetic tissue samples were used for histological as well as immunohistochemical analysis and isolation and characterization of wear particles. Results: The mean linear wear rate in the MoM group was 2.34 (SD 1.93) mum/year, significantly lower than the value in the MoP group, 11.52 (SD 7.82) mum/year. Significantly lower was also the volumetric wear, 0.19 (SD 0.32) mm~3/year for MoM compared to 0.98 (SD 0.78) mm~3/year for MoP. In both groups the main wear mode was abrasive wear. Histological results for MoM group indicate more lymphocyte dominated periprosthetic tissue reaction compared to MoP group. The mean size of polyethylene particles in the MoP group was 0.21 (SD 0.44) mum. In the MoM nanosized CoCrMo particles were identified. The characterization of metal particles was complex and required special, attention in terms of instrumentation (field emission scanning electron microscopy in back-scattered mode); otherwise it was difficult to distinguish metal particles from other particles in the tissue. Conclusions: Despite a significantly lower wear and, consequently, smaller load of periprosthetic tissue with wear particles in the MoM group, the tissue reaction was similar, if not more intense than in the MoP group.
机译:背景与目的:引入金属对金属(MoM)轴承作为传统的金属对聚乙烯(MoP)轴承的替代产品,以减少磨损并增加髋关节假体的使用寿命。本研究的目的是比较摩擦学性质,并评估仅在轴承类型方面不同的两组相同假体中的假体周围组织反应。患者和方法:在翻修手术中,收集了26个MoM和12个MoP轴承组件和假体周围组织样本。假体组件用于评估磨损,线性和体积磨损以及粗糙度。假肢周围组织样品用于组织学以及免疫组织化学分析以及磨损颗粒的分离和表征。结果:MoM组的平均线性磨损率为2.34(SD 1.93)妈妈/年,大大低于MoP组的11.52(SD 7.82)妈妈/年。体积磨损也显着降低,MoM为0.19(SD 0.32)mm〜3 /年,而MoP为0.98(SD 0.78)mm〜3 /年。在两组中,主要磨损方式均为磨料磨损。 MoM组的组织学结果表明,与MoP组相比,修复体周围的淋巴细胞占更多的淋巴细胞。 MoP组中聚乙烯颗粒的平均尺寸为0.21(SD 0.44)微米。在MoM中,鉴定出纳米级CoCrMo颗粒。金属颗粒的表征很复杂,需要特别注意,在仪器方面(背散射模式下的场发射扫描电子显微镜);否则很难将金属颗粒与组织中的其他颗粒区分开。结论:尽管MoM组的磨损显着降低,因此假体周围组织的磨损颗粒负荷较小,但组织反应还是相似的,即使没有MoP组强烈。

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