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PEEK-OPTIMA™ as an alternative to cobalt chrome in the femoral component of total knee replacement: A preliminary study

机译:PEEK-OPTIMA™在全膝关节置换的股骨组件中替代钴铬合金的初步研究

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摘要

PEEK-OPTIMA (Invibio Ltd, UK) has been considered as an alternative joint arthroplasty bearing material due to its favourable mechanical properties and the biocompatibility of its wear debris. In this study, the potential to use injection moulded PEEK-OPTIMA as an alternative to cobalt chrome in the femoral component of a total knee replacement was investigated in terms of its wear performance. Experimental wear simulation of three cobalt chrome and three PEEK-OPTIMA femoral components articulating against all-polyethylene tibial components was carried out under two kinematic conditions: 3 million cycles under intermediate kinematics (maximum anterior-posterior displacement of 5 mm) followed by 3 million cycles under high kinematic conditions (anterior-posterior displacement 10 mm). The wear of the GUR1020 ultra-high-molecular-weight polyethylene tibial components was assessed by gravimetric analysis; for both material combinations under each kinematic condition, the mean wear rates were low, that is, below 5 mm3/million cycles. Specifically, under intermediate kinematic conditions, the wear rate of the ultra-high-molecular-weight polyethylene tibial components was 0.96 ± 2.26 mm3/million cycles and 2.44 ± 0.78 mm3/million cycle against cobalt chrome and PEEK-OPTIMA implants, respectively (p = 0.06); under high kinematic conditions, the wear rates were 2.23 ± 1.85 mm3/million cycles and 4.44 ± 2.35 mm3/million cycles, respectively (p = 0.03). Following wear simulation, scratches were apparent on the surface of the PEEK-OPTIMA femoral components. The surface topography of the femoral components was assessed using contacting profilometry and showed a statistically significant increase in measured surface roughness of the PEEK-OPTIMA femoral components compared to the cobalt chrome implants. However, this did not appear to influence the wear rate, which remained linear over the duration of the study. These preliminary findings showed that PEEK-OPTIMA gives promise as an alternative bearing material to cobalt chrome alloy in the femoral component of a total knee replacement with respect to wear performance.
机译:PEEK-OPTIMA (英国Invibio Ltd)因其良好的机械性能和磨损碎片的生物相容性而被视为关节置换术的替代材料。在这项研究中,就其耐磨性而言,研究了在全膝关节置换的股骨组件中使用注模PEEK-OPTIMA 替代钴铬的潜力。在两种运动学条件下进行了三种钴铬合金和三种PEEK-OPTIMA 股骨部件与全聚乙烯胫骨部件铰接的实验磨损模拟:在中等运动学条件下进行了300万次循环(最大前后位移5?mm),然后在高运动条件下(前后位移10?mm)进行300万个循环。通过重量分析法评估了GUR1020超高分子量聚乙烯胫骨组件的磨损;在每种运动条件下,两种材料组合的平均磨损率都很低,即低于5 mm 3 /百万次循环。具体地,在中等运动条件下,超高分子量聚乙烯胫骨组件的磨损率是每百万次循环0.96±2.26 mm 3 和2.44±0.78 mm 3 植入物进行了> /百万次循环(p = 0.06);在高运动学条件下,磨损率分别为2.23±1.85mm 3 /百万次循环和4.44±±2.35mm 3 /百万次循环(p = 0.03)。磨损模拟后,PEEK-OPTIMA 股骨组件表面明显出现划痕。接触轮廓轮廓仪评估了股骨部件的表面形貌,并显示与钴铬植入物相比,PEEK-OPTIMA 股骨部件的测量表面粗糙度在统计学上有显着增加。但是,这似乎并未影响磨损率,该磨损率在研究期间保持线性。这些初步发现表明,就磨损性能而言,PEEK-OPTIMA 有望在全膝关节置换的股骨组件中作为钴铬合金的替代轴承材料。

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