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. 2013 May 7;58(9):2751-67.
doi: 10.1088/0031-9155/58/9/2751. Epub 2013 Apr 3.

Quantification of in vivo implant wear in total knee replacement from dynamic single plane radiography

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Quantification of in vivo implant wear in total knee replacement from dynamic single plane radiography

Matthew G Teeter et al. Phys Med Biol. .

Abstract

An in vivo method to measure wear in total knee replacements was developed using dynamic single-plane fluoroscopy. A dynamic, anthropomorphic total knee replacement phantom with interchangeable, custom-fabricated components of known wear volume was created, and dynamic imaging was performed. For each frame of the fluoroscopy data, the relative location of the femoral and tibial components were determined, and the apparent intersection of the femoral component with the tibial insert was used to calculate wear volume, wear depth, and frequency of intersection. No difference was found between the measured and true wear volumes. The precision of the measurements was ±39.7 mm(3) for volume and ±0.126 mm for wear depth. The results suggest the system is capable of tracking wear volume changes across multiple time points in patients. As a dynamic technique, this method can provide both kinematic and wear measurements that may be useful for evaluating new implant designs for total knee replacements.

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