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Mechanical identification of hyperelastic anisotropic properties of mouse carotid arteries

  • Badel Pierre
  • , Avril Stéphane
  • , Lessner Susan
  • , Sutton Michael

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Résumé

The role of mechanics is known to be of primary order in many arterial diseases; however determining mechanical properties of arteries remains a challenge. This paper discusses the identifiability of a Holzapfel-type material model for a mouse carotid artery, using an inverse method based on a finite element model and 3D digital image correlation measurements of the surface strain during an inflation/extension test. Layer-specific mean fiber angles are successfully determined using a five parameter constitutive model, demonstrating good robustness of the identification procedure. Importantly, we show that a model based on a single thick layer is unable to render the biaxial mechanical response of the artery tested here. On the contrary, difficulties related to the identification of a seven parameter constitutive model are evidenced; such a model leads to multiple solutions. Nevertheless, it is shown that an additional mechanical test, different in nature with the previous one, solves this problem.

langue originaleAnglais
titreMechanics of Biological Systems and Materials - Proceedings of the 2011 Annual Conference on Experimental and Applied Mechanics
EditeurSpringer New York LLC
Pages11-17
Nombre de pages7
ISBN (imprimé)9781461402183
Les DOIs
étatPublié - 1 janv. 2011
Modification externeOui
Evénement2011 SEM Annual Conference on Experimental and Applied Mechanics - Uncasville, CT, États-Unis
Durée: 13 juin 201116 juin 2011

Série de publications

NomConference Proceedings of the Society for Experimental Mechanics Series
Volume2
ISSN (imprimé)2191-5644
ISSN (Electronique)2191-5652

Une conférence

Une conférence2011 SEM Annual Conference on Experimental and Applied Mechanics
Pays/TerritoireÉtats-Unis
La villeUncasville, CT
période13/06/1116/06/11

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