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Tensile response of the muscle-tendon complex using discrete element model

Communication avec acte
Auteur
ROUX, Anthony
LECOMPTE, Jennyfer
GRAS, Laure-Lise
ccLAPORTE, Sébastien
99538 Laboratoire de biomécanique [LBM]
ccIORDANOFF, Ivan

URI
http://hdl.handle.net/10985/8765
DOI
10.1080/10255842.2014.931543
Date
2014

Résumé

Tear of the muscle-tendon complex (MTC) is one of the main causes of sport injuries (De Labareyre et al. 2005). However, the mechanisms leading to such injury are still unclear (Uchiyama et al. 2011). Before modeling the tear of the MTC, its behavior in tensile test will be first studied. The MTC is a multi-scale, non isotropic and non continuous structure that is composed of numerous fascicles gathered together in a conjunctive sheath (epimysium). Many MTC models use the Finite Element Method (FEM) (Bosboom et al. 2001) to simulate MTC’s behavior as a hyperviscoelastic material. The Discrete Element Method (DEM) used for modeling composite materials (Iliescu et al. 2010) could be adapted to fibrous materials as the MTC. Compared to FEM, the DEM could allow to capture the complex behavior of a material with a simple discretization scheme in terms of concept and implementation as well as to understand the influence of fibers’ orientation on the MTC behavior. The aim of this study was to obtain the force/displacement relationship during a numerical tensile test of a pennate muscle model with DEM.

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  • Institut de Biomécanique Humaine Georges Charpak (IBHGC)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Influence of muscle-tendon complex geometrical parameters on modeling passive stretch behavior with the Discrete Element Method 
    Article dans une revue avec comité de lecture
    ROUX, Anthony; LECOMPTE, Jennyfer; GRAS, Laure-Lise; ccLAPORTE, Sébastien; ccIORDANOFF, Ivan (Elsevier, 2016)
    The muscle-tendon complex (MTC) is a multi-scale, anisotropic, non-homogeneous structure. It is composed of fascicles, gathered together in a conjunctive aponeurosis. Fibers are oriented into the MTC with a pennation angle. ...
  • Modelling of fascia lata rupture during tensile tests via the discrete element method 
    Article dans une revue avec comité de lecture
    ccMUTH-SENG, Christophe; GRAS, Laure-Lise; ROUX, ANTHONY; ccLAPORTE, Sébastien (Taylor & Francis, 2017)
    The aim of this study is to reproduce numerically the macroscopic behaviour of the fascia lata submitted to a tensile test using DEM.
  • Fascia Lata Numerical Model With Discrete Element Method: Relationship Between Micro And Macroscale For Tensile Tests Until Rupture 
    Article dans une revue avec comité de lecture
    ccMUTH-SENG, Christophe; ROUX ANTHONY, /; GRAS, Laure-Lise; ccLAPORTE, Sébastien (Elsevier, 2018)
    Fascia Lata Numerical Model With Discrete Element Method: Relationship Between Micro And Macroscale For Tensile Tests Until Rupture
  • Modeling of muscular activation of the muscle-tendon complex using discrete element method 
    Article dans une revue avec comité de lecture
    ROUX, Anthony; ccLECOMPTE, Jennyfer; ccIORDANOFF, Ivan; LAPORTE, Sébastien (Taylor & Francis, 2021-01)
    The tearing of a muscle-tendon complex (MTC) is caused by an eccentric contraction; however, the structures involved and the mechanisms of rupture are not clearly identified. The passive mechanical behavior the MTC has ...
  • Rupture of the muscle-tendon complex in tensile test. Comparison between experimentations and discrete element modeling 
    Article dans une revue avec comité de lecture
    ROUX, Anthony; HAEN, Thomas-Xavier; LECOMPTE, Jennyfer; ccLAPORTE, Sébastien; ccIORDANOFF, Ivan (Informa UK Limited, 2015)
    Rupture of the muscle-tendon complex in tensile test. Comparison between experimentations and discrete element modeling

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