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Novel ultrasound assisted suture anchor system using the BoneWelding® technology yields a comparable primary stability in osteopenic and healthy human humeri as a benchmark anchor

INTRODUCTION: The aim of this biomechanical study was to evaluate the primary stability of the SportWelding® Sombrero 3.6 mm suture anchor system in osteopenic and healthy cadaveric humeri. METHODS: The Sombrero® and BioCorkscrew® anchors were deployed in 8 osteopenic and 4 healthy cadaver humeri af...

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Autores principales: Güleçyüz, Mehmet F., Schröder, Christian, Pietschmann, Matthias F., Göbel, Stephanie, Lehmann, Mario, Mayer, Jörg, Ficklscherer, Andreas, Jansson, Volkmar, Müller, Peter E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Turkish Association of Orthopaedics and Traumatology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6136304/
https://www.ncbi.nlm.nih.gov/pubmed/29290535
http://dx.doi.org/10.1016/j.aott.2017.11.009
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author Güleçyüz, Mehmet F.
Schröder, Christian
Pietschmann, Matthias F.
Göbel, Stephanie
Lehmann, Mario
Mayer, Jörg
Ficklscherer, Andreas
Jansson, Volkmar
Müller, Peter E.
author_facet Güleçyüz, Mehmet F.
Schröder, Christian
Pietschmann, Matthias F.
Göbel, Stephanie
Lehmann, Mario
Mayer, Jörg
Ficklscherer, Andreas
Jansson, Volkmar
Müller, Peter E.
author_sort Güleçyüz, Mehmet F.
collection PubMed
description INTRODUCTION: The aim of this biomechanical study was to evaluate the primary stability of the SportWelding® Sombrero 3.6 mm suture anchor system in osteopenic and healthy cadaveric humeri. METHODS: The Sombrero® and BioCorkscrew® anchors were deployed in 8 osteopenic and 4 healthy cadaver humeri after the bone mineral density (BMD) measurements of the 32 specimens. Both anchors were loaded with a USP Nr. 2 FiberWire® suture. An established cyclic testing protocol was performed. The maximum failure load (Fmax), the system displacement and the modes of failure were recorded. RESULTS: The F(max) and system displacement of the Sombrero® in osteopenic and healthy humeri was equivalent to the Bio-Corkscrew® benchmark anchor; there were no significant differences in the maximum failure loads and system displacement values. Only anchor and suture dislocations were observed; suture ruptures did not occur. CONCLUSION: This study shows that the Sombrero® yields similar maximum failure loads and system displacement values as the established Bio-Corkscrew® benchmark anchor. The primary stability of the Sombrero® and Bio-Corkscrew® seems to be independent of the bone mineral quality. This relatively small-sized polymer anchor is independent of the BMD and may be an alternative to established suture anchors in rotator cuff repair.
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spelling pubmed-61363042018-09-25 Novel ultrasound assisted suture anchor system using the BoneWelding® technology yields a comparable primary stability in osteopenic and healthy human humeri as a benchmark anchor Güleçyüz, Mehmet F. Schröder, Christian Pietschmann, Matthias F. Göbel, Stephanie Lehmann, Mario Mayer, Jörg Ficklscherer, Andreas Jansson, Volkmar Müller, Peter E. Acta Orthop Traumatol Turc Research Paper INTRODUCTION: The aim of this biomechanical study was to evaluate the primary stability of the SportWelding® Sombrero 3.6 mm suture anchor system in osteopenic and healthy cadaveric humeri. METHODS: The Sombrero® and BioCorkscrew® anchors were deployed in 8 osteopenic and 4 healthy cadaver humeri after the bone mineral density (BMD) measurements of the 32 specimens. Both anchors were loaded with a USP Nr. 2 FiberWire® suture. An established cyclic testing protocol was performed. The maximum failure load (Fmax), the system displacement and the modes of failure were recorded. RESULTS: The F(max) and system displacement of the Sombrero® in osteopenic and healthy humeri was equivalent to the Bio-Corkscrew® benchmark anchor; there were no significant differences in the maximum failure loads and system displacement values. Only anchor and suture dislocations were observed; suture ruptures did not occur. CONCLUSION: This study shows that the Sombrero® yields similar maximum failure loads and system displacement values as the established Bio-Corkscrew® benchmark anchor. The primary stability of the Sombrero® and Bio-Corkscrew® seems to be independent of the bone mineral quality. This relatively small-sized polymer anchor is independent of the BMD and may be an alternative to established suture anchors in rotator cuff repair. Turkish Association of Orthopaedics and Traumatology 2018-03 2017-12-28 /pmc/articles/PMC6136304/ /pubmed/29290535 http://dx.doi.org/10.1016/j.aott.2017.11.009 Text en © 2017 Turkish Association of Orthopaedics and Traumatology. Publishing services by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Güleçyüz, Mehmet F.
Schröder, Christian
Pietschmann, Matthias F.
Göbel, Stephanie
Lehmann, Mario
Mayer, Jörg
Ficklscherer, Andreas
Jansson, Volkmar
Müller, Peter E.
Novel ultrasound assisted suture anchor system using the BoneWelding® technology yields a comparable primary stability in osteopenic and healthy human humeri as a benchmark anchor
title Novel ultrasound assisted suture anchor system using the BoneWelding® technology yields a comparable primary stability in osteopenic and healthy human humeri as a benchmark anchor
title_full Novel ultrasound assisted suture anchor system using the BoneWelding® technology yields a comparable primary stability in osteopenic and healthy human humeri as a benchmark anchor
title_fullStr Novel ultrasound assisted suture anchor system using the BoneWelding® technology yields a comparable primary stability in osteopenic and healthy human humeri as a benchmark anchor
title_full_unstemmed Novel ultrasound assisted suture anchor system using the BoneWelding® technology yields a comparable primary stability in osteopenic and healthy human humeri as a benchmark anchor
title_short Novel ultrasound assisted suture anchor system using the BoneWelding® technology yields a comparable primary stability in osteopenic and healthy human humeri as a benchmark anchor
title_sort novel ultrasound assisted suture anchor system using the bonewelding® technology yields a comparable primary stability in osteopenic and healthy human humeri as a benchmark anchor
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6136304/
https://www.ncbi.nlm.nih.gov/pubmed/29290535
http://dx.doi.org/10.1016/j.aott.2017.11.009
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