Literature DB >> 16649169

Digital photogrammetry for quantitative wear analysis of retrieved TKA components.

J C Grochowsky1, L W Alaways, R Siskey, E Most, S M Kurtz.   

Abstract

The use of new materials in knee arthroplasty demands a way in which to accurately quantify wear in retrieved components. Methods such as damage scoring, coordinate measurement, and in vivo wear analysis have been used in the past. The limitations in these methods illustrate a need for a different methodology that can accurately quantify wear, which is relatively easy to perform and uses a minimal amount of expensive equipment. Off-the-shelf digital photogrammetry represents a potentially quick and easy alternative to what is readily available. Eighty tibial inserts were visually examined for front and backside wear and digitally photographed in the presence of two calibrated reference fields. All images were segmented (via manual and automated algorithms) using Adobe Photoshop and National Institute of Health ImageJ. Finally, wear was determined using ImageJ and Rhinoceros software. The absolute accuracy of the method and repeatability/reproducibility by different observers were measured in order to determine the uncertainty of wear measurements. To determine if variation in wear measurements was due to implant design, 35 implants of the three most prevalent designs were subjected to retrieval analysis. The overall accuracy of area measurements was 97.8%. The error in automated segmentation was found to be significantly lower than that of manual segmentation. The photogrammetry method was found to be reasonably accurate and repeatable in measuring 2-D areas and applicable to determining wear. There was no significant variation in uncertainty detected among different implant designs. Photogrammetry has a broad range of applicability since it is size- and design-independent. A minimal amount of off-the-shelf equipment is needed for the procedure and no proprietary knowledge of the implant is needed. (c) 2006 Wiley Periodicals, Inc.

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Year:  2006        PMID: 16649169     DOI: 10.1002/jbm.b.30537

Source DB:  PubMed          Journal:  J Biomed Mater Res B Appl Biomater        ISSN: 1552-4973            Impact factor:   3.368


  7 in total

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Authors:  Rafael Ballesteros; Nuria Bonsfills; Marta Chacón; Javier García-Lázaro; Enrique Gómez-Barrena
Journal:  J Digit Imaging       Date:  2012-08       Impact factor: 4.056

2.  A pictographic atlas for classifying damage modes on polyethylene bearings.

Authors:  Melinda Harman; Luca Cristofolini; Paolo Erani; Susanna Stea; Marco Viceconti
Journal:  J Mater Sci Mater Med       Date:  2011-04-02       Impact factor: 3.896

3.  Non-viral gene-activated matrices: next generation constructs for bone repair.

Authors:  Erica G Tierney; Garry P Duffy; Sally-Ann Cryan; Caroline M Curtin; Fergal J O'Brien
Journal:  Organogenesis       Date:  2013-01-01       Impact factor: 2.500

4.  An autonomous mathematical reconstruction to effectively measure volume loss on retrieved polyethylene tibial inserts.

Authors:  Christopher B Knowlton; Markus A Wimmer
Journal:  J Biomed Mater Res B Appl Biomater       Date:  2012-08-22       Impact factor: 3.368

5.  Corrosion Damage and Wear Mechanisms in Long-Term Retrieved CoCr Femoral Components for Total Knee Arthroplasty.

Authors:  Christina M Arnholt; Daniel W MacDonald; Arthur L Malkani; Gregg R Klein; Clare M Rimnac; Steven M Kurtz; Sevi B Kocagoz; Jeremy L Gilbert
Journal:  J Arthroplasty       Date:  2016-05-12       Impact factor: 4.757

6.  Comparison of in vivo and simulator-retrieved metal-on-metal cervical disc replacements.

Authors:  Steven M Kurtz; Lauren Ciccarelli; Megan L Harper; Ryan Siskey; Jacob Shorez; Frank W Chan
Journal:  Int J Spine Surg       Date:  2012-12-01

7.  Peripheral snap-fit locking mechanisms and smooth surface finish of tibial trays reduce backside wear in fixed-bearing total knee arthroplasty.

Authors:  Łukasz Łapaj; Adrian Mróz; Paweł Kokoszka; Jacek Markuszewski; Justyna Wendland; Celina Helak-Łapaj; Jacek Kruczyński
Journal:  Acta Orthop       Date:  2016-10-26       Impact factor: 3.717

  7 in total

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