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Derivation of inter-lamellar behaviour of the intervertebral disc annulus

The inter-lamellar connectivity of the annulus fibrosus in the intervertebral disc has been shown to affect the prediction of the overall disc behaviour in computational models. Using a combined experimental and computational approach, the inter-lamellar mechanical behaviour of the disc annulus was...

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Autores principales: Mengoni, Marlène, Luxmoore, Bethany J., Wijayathunga, Vithanage N., Jones, Alison C., Broom, Neil D., Wilcox, Ruth K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4455908/
https://www.ncbi.nlm.nih.gov/pubmed/25955558
http://dx.doi.org/10.1016/j.jmbbm.2015.03.028
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author Mengoni, Marlène
Luxmoore, Bethany J.
Wijayathunga, Vithanage N.
Jones, Alison C.
Broom, Neil D.
Wilcox, Ruth K.
author_facet Mengoni, Marlène
Luxmoore, Bethany J.
Wijayathunga, Vithanage N.
Jones, Alison C.
Broom, Neil D.
Wilcox, Ruth K.
author_sort Mengoni, Marlène
collection PubMed
description The inter-lamellar connectivity of the annulus fibrosus in the intervertebral disc has been shown to affect the prediction of the overall disc behaviour in computational models. Using a combined experimental and computational approach, the inter-lamellar mechanical behaviour of the disc annulus was investigated under conditions of radial loading. Twenty-seven specimens of anterior annulus fibrosus were dissected from 12 discs taken from four frozen ovine thoracolumbar spines. Specimens were grouped depending on their radial provenance within the annulus fibrosus. Standard tensile tests were performed. In addition, micro-tensile tests under microscopy were used to observe the displacement of the lamellae and inter-lamellar connections. Finite elements models matching the experimental protocols were developed with specimen-specific geometries and boundary conditions assuming a known lamellar behaviour. An optimisation process was used to derive the interface stiffness values for each group. The assumption of a linear cohesive interface was used to model the behaviour of the inter-lamellar connectivity. The interface stiffness values derived from the optimisation process were consistently higher than the corresponding lamellar values. The interface stiffness values of the outer annulus were from 43% to 75% higher than those of the inner annulus. Tangential stiffness values for the interface were from 6% to 39% higher than normal stiffness values within each group and similar to values reported by other investigators. These results reflect the intricate fibrous nature of the inter-lamellar connectivity and provide values for the representation of the inter-lamellar behaviour at a continuum level.
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spelling pubmed-44559082015-08-01 Derivation of inter-lamellar behaviour of the intervertebral disc annulus Mengoni, Marlène Luxmoore, Bethany J. Wijayathunga, Vithanage N. Jones, Alison C. Broom, Neil D. Wilcox, Ruth K. J Mech Behav Biomed Mater Research Paper The inter-lamellar connectivity of the annulus fibrosus in the intervertebral disc has been shown to affect the prediction of the overall disc behaviour in computational models. Using a combined experimental and computational approach, the inter-lamellar mechanical behaviour of the disc annulus was investigated under conditions of radial loading. Twenty-seven specimens of anterior annulus fibrosus were dissected from 12 discs taken from four frozen ovine thoracolumbar spines. Specimens were grouped depending on their radial provenance within the annulus fibrosus. Standard tensile tests were performed. In addition, micro-tensile tests under microscopy were used to observe the displacement of the lamellae and inter-lamellar connections. Finite elements models matching the experimental protocols were developed with specimen-specific geometries and boundary conditions assuming a known lamellar behaviour. An optimisation process was used to derive the interface stiffness values for each group. The assumption of a linear cohesive interface was used to model the behaviour of the inter-lamellar connectivity. The interface stiffness values derived from the optimisation process were consistently higher than the corresponding lamellar values. The interface stiffness values of the outer annulus were from 43% to 75% higher than those of the inner annulus. Tangential stiffness values for the interface were from 6% to 39% higher than normal stiffness values within each group and similar to values reported by other investigators. These results reflect the intricate fibrous nature of the inter-lamellar connectivity and provide values for the representation of the inter-lamellar behaviour at a continuum level. Elsevier 2015-08 /pmc/articles/PMC4455908/ /pubmed/25955558 http://dx.doi.org/10.1016/j.jmbbm.2015.03.028 Text en © 2015 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Mengoni, Marlène
Luxmoore, Bethany J.
Wijayathunga, Vithanage N.
Jones, Alison C.
Broom, Neil D.
Wilcox, Ruth K.
Derivation of inter-lamellar behaviour of the intervertebral disc annulus
title Derivation of inter-lamellar behaviour of the intervertebral disc annulus
title_full Derivation of inter-lamellar behaviour of the intervertebral disc annulus
title_fullStr Derivation of inter-lamellar behaviour of the intervertebral disc annulus
title_full_unstemmed Derivation of inter-lamellar behaviour of the intervertebral disc annulus
title_short Derivation of inter-lamellar behaviour of the intervertebral disc annulus
title_sort derivation of inter-lamellar behaviour of the intervertebral disc annulus
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4455908/
https://www.ncbi.nlm.nih.gov/pubmed/25955558
http://dx.doi.org/10.1016/j.jmbbm.2015.03.028
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