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Wear Distribution Detection of Knee Joint Prostheses by Means of 3D Optical Scanners

机译:借助3D光学扫描仪检测膝关节假体的磨损分布

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摘要

The objective of this study was to examine total knee polyethylene inserts from in vitro simulation to evaluate and display—using a 3D optical scanner—wear patterns and wear rates of inserts exposed to wear by means of simulators. Various sets of tibial inserts have been reconstructed by using optical scanners. With this in mind, the wear behavior of fixed and mobile bearing polyethylene knee configurations was investigated using a knee wear joint simulator. After the completion of the wear test, the polyethylene menisci were analyzed by an innovative 3D optical scanners in order to evaluate the 3D wear distribution on the prosthesis surface. This study implemented a new procedure for evaluating polyethylene bearings of joint prostheses obtained after in vitro wear tests and the proposed new approach allowed quantification of the contact zone on the geometry of total knee prostheses. The results of the present study showed that mobile TKPs (total knee prosthesis) have lower wear resistance with respect to fixed TKPs.
机译:这项研究的目的是通过3D光学扫描仪检查来自体外模拟的总膝盖聚乙烯插入物,以评估和显示通过模拟器暴露于磨损的插入物的磨损模式和磨损率。通过使用光学扫描仪已经重建了各种胫骨插入物。考虑到这一点,使用膝关节磨损模拟器研究了固定和活动轴承聚乙烯膝盖构造的磨损行为。磨损测试完成后,通过创新的3D光学扫描仪分析聚乙烯半月板,以评估假体表面上的3D磨损分布。这项研究实施了一种新的程序,用于评估在体外磨损测试后获得的关节假体的聚乙烯轴承,并且所提出的新方法可以量化整个膝关节假体的接触区域。本研究的结果表明,相对于固定TKP,可移动TKP(全膝关节假体)的耐磨性较低。

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