Does transosseous-equivalent rotator cuff repair biomechanically provide a "self-reinforcement" effect compared with single-row repair?

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Abstract

Background: Transosseous-equivalent (TOE) rotator cuff repair has been theorized to be "self-reinforcing" against potentially destructive and increasing tendon loads. The goal of this study was to biomechanically verify and characterize the effect of increasing tendon load on frictional resistance over a repaired footprint for single-row (SR) and TOE repair techniques. Methods: In 10 fresh frozen human shoulders, TOE and SR supraspinatus tendon repairs were performed in each specimen. For all repairs, a pressure sensor was secured at the tendon-footprint interface. The supraspinatus tendon was loaded with 0, 20, 40, 60, and 80N at 0° and 30° abduction. Paired t tests and multivariate regression analyses were used for comparisons. Results: The SR repair had significant increases in footprint contact force, area, and pressure between each and all tendon-loading conditions (. P

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Park, M. C., McGarry, M. H., Gunzenhauser, R. C., Benefiel, M. K., Park, C. J., & Lee, T. Q. (2014). Does transosseous-equivalent rotator cuff repair biomechanically provide a “self-reinforcement” effect compared with single-row repair? Journal of Shoulder and Elbow Surgery, 23(12), 1813–1821. https://doi.org/10.1016/j.jse.2014.03.008

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