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Identification of anisotropic tensile strength of cortical bone using Brazilian test.

Article dans une revue avec comité de lecture
Auteur
ALLENA, Rachele
99538 Laboratoire de biomécanique [LBM]
CLUZEL, Christophe
99538 Laboratoire de biomécanique [LBM]

URI
http://hdl.handle.net/10985/8625
DOI
10.1016/j.jmbbm.2014.06.007
Date
2014
Journal
Journal of the mechanical behavior of biomedical materials

Résumé

For a proper analysis of cortical bone behaviour, it is essential to take into account both the elastic stiffness and the failure criteria. While ultrasound methods allow complete identification of the elastic orthotropic coefficients, tests used to characterise the various failure mechanisms and to identify the brittle tensile strength in all directions are currently inadequate. In the present work we propose the Brazilian test as a complement to conventional tensile tests. In fact, this experimental technique, rarely employed in the biomechanics field, has the potential to provide an accurate description of the anisotropic strength of cortical bone. Additionally, it allows us to assess the scale influence on failure behaviour which may be attributed to an intrinsic length in correlation with the cortical bone microstructure. In order to correctly set up the Brazilian test, several aspects such as the machining, the geometrical parameters of the specimen and the loading conditions were determined. The finite element method was used to evaluate the maximal tensile stress at the centre of a 2D anisotropic elastic specimen as a simple function of the loading. To validate the protocol, the Brazilian test was carried out on 29 cortical bovine cylindrical specimens with diameters ranging from 10mm to 4mm.

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LBM_JMBBM_ALLENA_2014.pdf
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  • Institut de Biomécanique Humaine Georges Charpak (IBHGC)

Documents liés

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  • A general method for the determination of the local orthotropic directions of heterogeneous materials: application to bone structures using µCT images 
    Article dans une revue avec comité de lecture
    CLUZEL, Christophe; ALLENA, Rachele (International Research Center for Mathematics & Mechanics of Complex Systems (M&MoCS),University of L’Aquila in Italy, 2018)
    To assess the degree (i.e., isotropy, transverse isotropy, or orthotropy) and the directions of anisotropy of a three-dimensional structure, information about its mesostructure is necessary. Usually, a topological analysis ...
  • Heterogeneous directions of orthotropy in three-dimensional structures: finite element description based on diffusion equations 
    Article dans une revue avec comité de lecture
    ALLENA, Rachele; CLUZEL, Christophe (International Research Center for Mathematics & Mechanics of Complex Systems (M&MoCS),University of L’Aquila in Italy, 2018)
    Heterogeneous materials such as bone or woven composites show mesostructures whose constitutive elements are all oriented locally in the same direction and channel the stress flow throughout the mechanical structure. The ...
  • Modelling of anisotropic cortical bone based on degradation mechanism 
    Article dans une revue avec comité de lecture
    CLUZEL, Christophe; ALLENA, Rachele (Taylor & Francis, 2015)
    When an orthopaedic prosthesis is implanted, it is essential to ensure bone remodelling and to maintain the proper mechanical properties under specific loading conditions. The coupling between the remodelling and the ...
  • Mechanical modelling of confined cell migration across constricted-curved micro-channels 
    Article dans une revue avec comité de lecture
    ALLENA, Rachele (Tech Science Press, 2014)
    Confined migration is a crucial phenomenon during embryogenesis, immune response and cancer. Here, a two-dimensional finite element model of a HeLa cell migrating across constricted-curved micro-channels is proposed. The ...
  • Simulating the Remodelling of Bone around Implants 
    Communication sans acte
    FRAME, Jamie C.; CORTÉ, Laurent; ALLENA, Rachele; ccROHAN, Pierre-Yves (2017)
    Introduction Improper osseointegration of implants leading to poor mechanical anchoring or embrittlement of neighboring bone is a major concern in orthopedic surgery [1?]. This integration is known to depend on the complex ...

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