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Stiffening of the nucleus pulposus upon axial loading of the intervertebral disc: An experimental in situ study

Mechanical loading is inherently related to the function and degeneration of the intervertebral disc. We present a series of experiments aimed at measuring the effect of a loading/unloading cycle of the intervertebral disc on the mechanical properties of the nucleus pulposus. The study relies on our...

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Detalles Bibliográficos
Autores principales: Beekmans, Steven V., Emanuel, Kaj S., Smit, Theodoor H., Iannuzzi, Davide
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6686818/
https://www.ncbi.nlm.nih.gov/pubmed/31463437
http://dx.doi.org/10.1002/jsp2.1005
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author Beekmans, Steven V.
Emanuel, Kaj S.
Smit, Theodoor H.
Iannuzzi, Davide
author_facet Beekmans, Steven V.
Emanuel, Kaj S.
Smit, Theodoor H.
Iannuzzi, Davide
author_sort Beekmans, Steven V.
collection PubMed
description Mechanical loading is inherently related to the function and degeneration of the intervertebral disc. We present a series of experiments aimed at measuring the effect of a loading/unloading cycle of the intervertebral disc on the mechanical properties of the nucleus pulposus. The study relies on our new minimally invasive microindenter, which allows us to quantify the storage and loss moduli of the nucleus pulposus by inserting an optomechanical probe in an intact (resected) intervertebral disk through the annulus fibrosis via a small needle. Our results indicate that, under the influence of compressive loading, the nucleus pulposus exhibits a more solid‐like behavior.
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spelling pubmed-66868182019-08-28 Stiffening of the nucleus pulposus upon axial loading of the intervertebral disc: An experimental in situ study Beekmans, Steven V. Emanuel, Kaj S. Smit, Theodoor H. Iannuzzi, Davide JOR Spine Research Articles Mechanical loading is inherently related to the function and degeneration of the intervertebral disc. We present a series of experiments aimed at measuring the effect of a loading/unloading cycle of the intervertebral disc on the mechanical properties of the nucleus pulposus. The study relies on our new minimally invasive microindenter, which allows us to quantify the storage and loss moduli of the nucleus pulposus by inserting an optomechanical probe in an intact (resected) intervertebral disk through the annulus fibrosis via a small needle. Our results indicate that, under the influence of compressive loading, the nucleus pulposus exhibits a more solid‐like behavior. John Wiley & Sons, Inc. 2018-03-15 /pmc/articles/PMC6686818/ /pubmed/31463437 http://dx.doi.org/10.1002/jsp2.1005 Text en © 2018 The Authors. JOR Spine published by Wiley Periodicals, Inc. on behalf of Orthopaedic Research Society This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Beekmans, Steven V.
Emanuel, Kaj S.
Smit, Theodoor H.
Iannuzzi, Davide
Stiffening of the nucleus pulposus upon axial loading of the intervertebral disc: An experimental in situ study
title Stiffening of the nucleus pulposus upon axial loading of the intervertebral disc: An experimental in situ study
title_full Stiffening of the nucleus pulposus upon axial loading of the intervertebral disc: An experimental in situ study
title_fullStr Stiffening of the nucleus pulposus upon axial loading of the intervertebral disc: An experimental in situ study
title_full_unstemmed Stiffening of the nucleus pulposus upon axial loading of the intervertebral disc: An experimental in situ study
title_short Stiffening of the nucleus pulposus upon axial loading of the intervertebral disc: An experimental in situ study
title_sort stiffening of the nucleus pulposus upon axial loading of the intervertebral disc: an experimental in situ study
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6686818/
https://www.ncbi.nlm.nih.gov/pubmed/31463437
http://dx.doi.org/10.1002/jsp2.1005
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