Massive, irreparable rotator cuff tears in patients without severe signs of osteoarthritis remains a major challenge for orthopaedic surgeons. These can be a source of significant pain and functional loss occurring most commonly in a relatively frail, elderly patient population. A plethora of surgical techniques covering minimally invasive, arthroscopic techniques and open, salvage procedures have been described for this challenging patient cohort. Continuous evolvement of arthroscopic techniques has led to all-arthroscopic superior capsular reconstruction techniques using allografts, thereby reducing donor side morbidity along with decreased soft tissue dissection. However, conventional superior capsular reconstruction is noted to be a technically complex, time-consuming, and high-cost surgery, which may put this technique beyond the confidence of many shoulder surgeons. The subacromial balloon spacer has emerged as a potential solution in these patients, providing interposition between the humeral head and acromion. However, the subacromial balloon biodegrades rapidly and its effect is only temporary. Thus this technique article presents using an acellular human dermal allograft to reconstruct the bursal layer, which is normally interposed between the humeral head and the acromion. The proposed technique provides a permanent interposition graft preventing humeral acromial contact, which does not undergo rapid biodegradation. The surgical technique is technically feasible, both minimizing surgical time and therefore operative risk to the patient.
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http://dx.doi.org/10.1016/j.eats.2020.11.002 | DOI Listing |
J Clin Med
January 2025
Division of Shoulder Sports Medicine and Arthroplasty, Department of Orthopedic Surgery, Jeju National University Hospital, Jeju 63241, Republic of Korea.
To evaluate the clinical and radiologic outcomes of arthroscopic augmented partial repair (APR) with acellular dermal matrix versus arthroscopic superior capsular reconstruction (SCR) in massive rotator cuff tears. The study included a total of 49 patients with massive rotator cuff tears who underwent arthroscopic APR (26 patients) and SCR (23 patients) between March 2018 and June 2021. Clinical scores, visual analog scores, and range of motion were collected preoperatively and postoperatively until the last follow-up.
View Article and Find Full Text PDFArthrosc Tech
December 2024
Department of Orthopaedic Surgery, University of Missouri, Columbia, Missouri, USA.
Rotator cuff tears are a common cause of shoulder pain and dysfunction. Recent and historical reports suggest that a sizable percentage of patients may experience a retear of the rotator cuff despite surgical intervention. Multiple biological and mechanical factors can influence outcomes after rotator cuff surgery, including patient age, rotator cuff tear size, chronicity, and rotator cuff tissue quality.
View Article and Find Full Text PDFJ Plast Reconstr Aesthet Surg
January 2025
Division of Plastic Surgery, Department of Surgery, Mayo Clinic, Rochester, MN, USA. Electronic address:
Background: Acellular dermal matrices (ADM) are an adjunct in implant-based breast reconstruction. While clinical outcomes have generally been equivocal between brands, a cost analysis between these brands has yet to be conducted. This study reports a single, academic institution's experience with 2 ADM brands in breast reconstruction and provides data on clinical and financial outcomes.
View Article and Find Full Text PDFArthroscopy
December 2024
Department of Medical Engineering and Physics, Centre for Implant Technology and Retrieval Analysis, Royal Perth Hospital, Perth, Australia.
Purpose: To assess the variability in graft biomechanical properties of an acellular human dermal matrix patch.
Methods: A total of 22 strips obtained from 6 separate graft specimens (AlloPatch HD) were tested. Load elongation properties after cyclic loading, including ultimate load at break, energy at break, and extension at break, were tested and compared by graft thickness.
Cell Tissue Bank
December 2024
NHS Blood and Transplant, Tissue Services R&D, 14 Estuary Banks, Speke, Liverpool, L24 8RB, UK.
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