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全关节置换术中的锥形磨损可以通过各种坐标测量系统进行可靠评估。

Taper wear in total joint arthroplasty can be reliably assessed with various coordinate measuring systems.

作者信息

Bormann Therese, Mueller Ulrike, Sonntag Robert, Schroeder Stefan, Kretzer J Philippe

机构信息

Department of Orthopaedics, Research Center of Biomechanics and Implant Technology, Heidelberg University Hospital, Schlierbacher Landstrasse 118a, 06118, Heidelberg, Germany.

出版信息

Sci Rep. 2025 Apr 6;15(1):11794. doi: 10.1038/s41598-025-96760-7.

Abstract

In total joint arthroplasty, wear and corrosion at modular taper junctions is an issue with clinical implications, as ions and wear debris can lead to adverse tissue reactions. The quantification of the generated wear is, therefore, an important measure to judge the performance of such modular junctions. This applies to pre-clinical in vitro investigations as well as to retrospective investigations of retrieved implants. The volume of the worn material can be determined with coordinate measuring machines (CMMs), which can generally be classified as tactile and optical systems. The study aims on the comparison of a tactile with two optical CMM systems for the determination of taper wear. To do so, four taper samples-three trunnions and one bore taper-with different amounts of known volumetric wear (range 1.5 mm to 8.3 mm) were fabricated. Wear volume, linear deviation and taper angle were determined with the different CMM systems. The tactile system yielded the highest deviation from the gravimetric reference values of about 0.3 mm, while the optical systems exhibited deviations of about 0.1 mm and 0.2 mm. Clinically relevant taper wear, however, is well measurable with all investigated systems.

摘要

在全关节置换术中,模块化锥度连接处的磨损和腐蚀是一个具有临床意义的问题,因为离子和磨损碎屑会导致不良组织反应。因此,对产生的磨损进行量化是判断此类模块化连接处性能的一项重要措施。这适用于临床前体外研究以及对取出植入物的回顾性研究。磨损材料的体积可以用坐标测量机(CMM)来确定,坐标测量机通常可分为接触式和光学系统。本研究旨在比较一种接触式坐标测量机与两种光学坐标测量机系统在测定锥度磨损方面的性能。为此,制作了四个锥度样本——三个耳轴和一个孔锥度——具有不同量的已知体积磨损(范围为1.5毫米至8.3毫米)。使用不同的坐标测量机系统测定磨损体积、线性偏差和锥角。接触式系统与重量参考值的偏差最大,约为0.3毫米,而光学系统的偏差约为0.1毫米和0.2毫米。然而,所有研究的系统都能很好地测量具有临床相关性的锥度磨损。

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