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Bursal Acromial Resurfacing Improves Shoulder Biomechanics in a Cadaveric Model of Massive Rotator Cuff Tear
Journal article   Peer reviewed

Bursal Acromial Resurfacing Improves Shoulder Biomechanics in a Cadaveric Model of Massive Rotator Cuff Tear

Sung-Hyun Cho, Chan-Joo Park, Sang-Jae Kim, Kyoung-Geun Lee, Gyu Rim Baek, Min-Shik Chung, Aaron T. Hui, Michelle H. McGarry, Thay Q. Lee and Yang-Soo Kim
Arthroscopy - Journal of Arthroscopic and Related Surgery, Vol.41(3)
2025

Abstract

Acromion Aged Biomechanical Phenomena Bursa, Synovial Cadaver Female Humans Male Middle Aged Range of Motion, Articular Rotator Cuff Injuries Shoulder Joint polytetrafluoroethylene abduction acromiograft acromiohumeral distance adult Article biomechanics bursal acromial resurfacing cadaver clinical effectiveness female human human tissue humeral head translation male middle aged musculoskeletal system parameters rotation rotator cuff rupture shoulder shoulder surgery subacromial contact area subacromial contact pressure acromion aged biomechanics pathophysiology range of motion rotator cuff injury shoulder joint surgery synovial bursa

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