Arthroscopic Transosseous-Equivalent Double-Row Rotator Cuff Repair Augmentation With Interpositional Demineralized Bone Fiber Implant

Failure of rotator cuff repairs contributes to decreased patient satisfaction and quality of life. Biologic enhancement of repairs represents a novel augmentation strategy attempting to reproduce native healing while concomitantly potentially decreasing the existing high failure rates associated wit...

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Main Authors: Juan Bernardo Villarreal-Espinosa, M.D., Rodrigo Saad-Berreta, B.A., Richard Danilkowicz, M.D., Zeeshan A. Khan, B.A., Stephanie Boden, M.D., Nikhil N. Verma, M.D.
Format: Article
Language:English
Published: Elsevier 2024-12-01
Series:Arthroscopy Techniques
Online Access:http://www.sciencedirect.com/science/article/pii/S2212628724002585
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author Juan Bernardo Villarreal-Espinosa, M.D.
Rodrigo Saad-Berreta, B.A.
Richard Danilkowicz, M.D.
Zeeshan A. Khan, B.A.
Stephanie Boden, M.D.
Nikhil N. Verma, M.D.
author_facet Juan Bernardo Villarreal-Espinosa, M.D.
Rodrigo Saad-Berreta, B.A.
Richard Danilkowicz, M.D.
Zeeshan A. Khan, B.A.
Stephanie Boden, M.D.
Nikhil N. Verma, M.D.
author_sort Juan Bernardo Villarreal-Espinosa, M.D.
collection DOAJ
description Failure of rotator cuff repairs contributes to decreased patient satisfaction and quality of life. Biologic enhancement of repairs represents a novel augmentation strategy attempting to reproduce native healing while concomitantly potentially decreasing the existing high failure rates associated with rotator cuff repairs. Scaffolds placed on top of the rotator cuff have been widely studied, yet no recreation of the native enthesis is achieved via this augmentation strategy. Several strategies involving placement of demineralized bone matrix scaffolds on an inlay configuration (between bone and tendon) have been reported demonstrating enhanced recreation of the native bone-tendon unit. This Technical Note describes the surgical technique of inlay demineralized bone fiber scaffold augmentation of rotator cuff repairs to enhance biological healing in aims of recreating the native enthesis.
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institution Kabale University
issn 2212-6287
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publishDate 2024-12-01
publisher Elsevier
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series Arthroscopy Techniques
spelling doaj-art-8f4c97a280b04dd391d4d7d827d5e41e2024-12-14T06:31:03ZengElsevierArthroscopy Techniques2212-62872024-12-011312103133Arthroscopic Transosseous-Equivalent Double-Row Rotator Cuff Repair Augmentation With Interpositional Demineralized Bone Fiber ImplantJuan Bernardo Villarreal-Espinosa, M.D.0Rodrigo Saad-Berreta, B.A.1Richard Danilkowicz, M.D.2Zeeshan A. Khan, B.A.3Stephanie Boden, M.D.4Nikhil N. Verma, M.D.5Department of Orthopaedics, Rush University Medical Center, Chicago, Illinois, U.S.A.Department of Orthopaedics, Rush University Medical Center, Chicago, Illinois, U.S.A.Department of Orthopaedics, Rush University Medical Center, Chicago, Illinois, U.S.A.Rush University Medical College, Chicago, Illinois, U.S.A.Department of Orthopaedics, Rush University Medical Center, Chicago, Illinois, U.S.A.Department of Orthopaedics, Rush University Medical Center, Chicago, Illinois, U.S.A.; Address correspondence to Nikhil N. Verma, M.D., Department of Orthopedics, 1620 W. Harrison St., Chicago, IL 60612, U.S.A.Failure of rotator cuff repairs contributes to decreased patient satisfaction and quality of life. Biologic enhancement of repairs represents a novel augmentation strategy attempting to reproduce native healing while concomitantly potentially decreasing the existing high failure rates associated with rotator cuff repairs. Scaffolds placed on top of the rotator cuff have been widely studied, yet no recreation of the native enthesis is achieved via this augmentation strategy. Several strategies involving placement of demineralized bone matrix scaffolds on an inlay configuration (between bone and tendon) have been reported demonstrating enhanced recreation of the native bone-tendon unit. This Technical Note describes the surgical technique of inlay demineralized bone fiber scaffold augmentation of rotator cuff repairs to enhance biological healing in aims of recreating the native enthesis.http://www.sciencedirect.com/science/article/pii/S2212628724002585
spellingShingle Juan Bernardo Villarreal-Espinosa, M.D.
Rodrigo Saad-Berreta, B.A.
Richard Danilkowicz, M.D.
Zeeshan A. Khan, B.A.
Stephanie Boden, M.D.
Nikhil N. Verma, M.D.
Arthroscopic Transosseous-Equivalent Double-Row Rotator Cuff Repair Augmentation With Interpositional Demineralized Bone Fiber Implant
Arthroscopy Techniques
title Arthroscopic Transosseous-Equivalent Double-Row Rotator Cuff Repair Augmentation With Interpositional Demineralized Bone Fiber Implant
title_full Arthroscopic Transosseous-Equivalent Double-Row Rotator Cuff Repair Augmentation With Interpositional Demineralized Bone Fiber Implant
title_fullStr Arthroscopic Transosseous-Equivalent Double-Row Rotator Cuff Repair Augmentation With Interpositional Demineralized Bone Fiber Implant
title_full_unstemmed Arthroscopic Transosseous-Equivalent Double-Row Rotator Cuff Repair Augmentation With Interpositional Demineralized Bone Fiber Implant
title_short Arthroscopic Transosseous-Equivalent Double-Row Rotator Cuff Repair Augmentation With Interpositional Demineralized Bone Fiber Implant
title_sort arthroscopic transosseous equivalent double row rotator cuff repair augmentation with interpositional demineralized bone fiber implant
url http://www.sciencedirect.com/science/article/pii/S2212628724002585
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