Nondestructive microimaging during preclinical pin-on-plate testing of novel materials for arthroplasty

Author:

Teeter Matthew G1,Langohr G Daniel G2,Medley John B3,Holdsworth David W4

Affiliation:

1. Division of Orthopaedic Surgery, London Health Sciences Centre, London, ON, Canada

2. Hand and Upper Limb Centre, St. Joseph’s Health Centre, London, ON, Canada

3. Department of Mechanical and Mechatronics Engineering, University of Waterloo, Waterloo, ON, Canada

4. Department of Surgery, The University of Western Ontario, London, ON, Canada

Abstract

The purpose of this study was to determine the ability of micro-computed tomography to quantify wear in preclinical pin-on-plate testing of materials for use in joint arthroplasty. Wear testing of CoCr pins articulating against six polyetheretherketone plates was performed using a pin-on-plate apparatus over 2 million cycles. Change in volume due to wear was quantified with gravimetric analysis and with micro-computed tomography, and the volumes were compared. Separately, the volume of polyetheretherketone pin-on-plate specimens that had been soaking in fluid for 52 weeks was quantified with both gravimetric analysis and micro-computed tomography, and repeated after drying. The volume change with micro-computed tomography was compared to the mass change with gravimetric analysis. The mean wear volume measured was 8.02 ± 6.38 mm3 with gravimetric analysis and 6.76 ± 5.38 mm3 with micro-computed tomography (p = 0.06). Micro-computed tomography volume measurements did not show a statistically significant change with drying for either the plates (p = 0.60) or the pins (p = 0.09), yet drying had a significant effect on the gravimetric mass measurements for both the plates (p = 0.03) and the pins (p = 0.04). Micro-computed tomography provided accurate measurements of wear in polyetheretherketone pin-on-plate test specimens, and no statistically significant change was caused by fluid uptake. Micro-computed tomography quantifies wear depth and wear volume, mapped to the specific location of damage on the specimen, and is also capable of examining subsurface density as well as cracking. Its noncontact, nondestructive nature makes it ideal for preclinical testing of materials, in which further additional analysis techniques may be utilized.

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Medicine

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Biotribology of PEEK Bearings in Multidirectional Pin-on-Disk Testers;PEEK Biomaterials Handbook;2019

2. Wear simulation strategies for reverse shoulder arthroplasty implants;Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine;2016-05

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