The influence of proximal stem geometry and surface finish on the fixation of a double-tapered cemented femoral stem.

J Biomech

The Implant Biomechanics Laboratory of the J. Vernon Luck, Sr., M.D. Orthopaedic Research Center, 2400 South Flower Street, Los Angeles Orthopaedic Hospital-UCLA, Los Angeles, CA 90007-2697, USA.

Published: January 2011

In this study, the in vitro fixation of four otherwise identical double-tapered stem-types, varying only in surface finish (polished or matte) and proximal stem geometry (with or without flanges) were compared under two conditions. First, four specimens of each stem type were tested with initially bonded stem-cement interfaces, representing early post-operative conditions. Then, simulating conditions a few weeks to months later, stems were implanted in unused synthetic femurs, with a thin layer coating the stem to prevent stem-cement adhesion. Per-cycle motions were measured at both cement interfaces throughout loading. Overall, surface finish had the smallest relative effect on fixation compared to flanges. Flanges increased axial fixation by 22 μm per-cycle, regardless of surface finish (P=0.01). Further, all stems moved under dynamic load at the stem-cement interface during the first few cycles of loading, even without a thin film. The results indicate that flanges have a greater effect on fixation than surface finish, and therefore adverse findings about matte surfaces should not necessarily apply to all double-tapered stems. Specifically, dorsal flanges enhance the stability of a tapered cemented femoral stem, regardless of surface finish.

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http://dx.doi.org/10.1016/j.jbiomech.2010.08.017DOI Listing

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