Biomechanical Properties of Double-Row Transosseous Rotator Cuff Repair Combined With the Cinch Stitch in the Lateral Row

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Arthroscopic Double-Row Transosseous Equivalent Rotator Cuff Repair with a Knotless Self-Reinforcing Technique

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Optimal Lateral Row Anchor Positioning in Posterior-Superior Transosseous Equivalent Rotator Cuff Repair

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Clinical outcomes of single versus double row, transosseous equivalent arthroscopic rotator cuff repair

Rotator cuff tears are common and are expected to present with increasing frequency as the population ages. Various techniques in surgical repair have been described to improve clinical outcomes. A arthroscopic transosseous-equivalent double row repair is believed to be superior, with improved tendon to bone contact area and reduced gap formation. In our series of 143 patients, with 76 undergoi...

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Biomechanical Performance of Medial Row Suture Placement Relative to the Musculotendinous Junction in Transosseous Equivalent Suture Bridge Double-Row Rotator Cuff Repair.

PURPOSE To compare the biomechanical performance of medial row suture placement relative to the musculotendinous junction (MTJ) in a cadaveric transosseous equivalent suture bridge (TOE-SB) double-row (DR) rotator cuff repair (RCR) model. METHODS A TOE-SB DR technique was used to reattach experimentally created supraspinatus tendon tears in 9 pairs of human cadaveric shoulders. The medial row...

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Medial versus lateral supraspinatus tendon properties: implications for double-row rotator cuff repair.

BACKGROUND Rotator cuff repair retear rates range from 25% to 90%, necessitating methods to improve repair strength. Although numerous laboratory studies have compared single-row with double-row fixation properties, little is known regarding regional (ie, medial vs lateral) suture retention properties in intact and torn tendons. HYPOTHESIS A torn supraspinatus tendon will have reduced suture ...

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ژورنال

عنوان ژورنال: Orthopaedic Journal of Sports Medicine

سال: 2021

ISSN: 2325-9671,2325-9671

DOI: 10.1177/23259671211006040