Stéphane AVRIL

  • Responsabilité et missions

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  • Compétences

    biomechanics
    mechanobiology
    Biomedical engineering
    Vascular mechanics
    Soft tissues
    Computational modelling

  • Activités de recherche

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  • Enseignement

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  • Biographie

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  • Formation

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  • Carrière

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  • Principaux ouvrages

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  • Distinctions

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309 documents

  • Di Zuo, Stéphane Avril, Chunjiang Ran, Haitian Yang, S. Jamaleddin Mousavi, et al.. Sensitivity analysis of non‐local damage in soft biological tissues. International Journal for Numerical Methods in Biomedical Engineering, 2020, 37 (3), ⟨10.1002/cnm.3427⟩. ⟨hal-04826057⟩
  • Raja Jayendiran, Francesca Condemi, Salvatore Campisi, Magalie Viallon, Pierre Croisille, et al.. Computational prediction of hemodynamical and biomechanical alterations induced by aneurysm dilatation in patient‐specific ascending thoracic aortas. International Journal for Numerical Methods in Biomedical Engineering, 2020, 36 (6), ⟨10.1002/cnm.3326⟩. ⟨hal-04826075⟩
  • Cristina Cavinato, Pierre Badel, Witold Krasny, Stéphane Avril, Claire Morin. Experimental Characterization of Adventitial Collagen Fiber Kinematics Using Second-Harmonic Generation Imaging Microscopy: Similarities and Differences Across Arteries, Species and Testing Conditions. Multi-scale Extracellular Matrix Mechanics and Mechanobiology, 23, Springer International Publishing, pp.123-164, 2020, Studies in Mechanobiology, Tissue Engineering and Biomaterials, 978-3-030-20181-4. ⟨10.1007/978-3-030-20182-1_5⟩. ⟨hal-03978203⟩
  • Felipe Pires, Stéphane Avril, Julio Cordioli, Steve Vanlanduit, Joris Dirckx. Local Stiffness Estimation of the Human Eardrum via the Virtual Fields Method. Computer Methods, Imaging and Visualization in Biomechanics and Biomedical Engineering, 36, Springer International Publishing, pp.248-255, 2020, Lecture Notes in Computational Vision and Biomechanics, ⟨10.1007/978-3-030-43195-2_20⟩. ⟨hal-04826085⟩
  • C. Petit, V. Barnier, Stéphane Avril. Atomic force microscopy for subcellular exploration of the mechanical properties of human aortic smooth muscle cells. Computer Methods in Biomechanics and Biomedical Engineering, 2020, 22 (sup1), pp.S276-S277. ⟨10.1080/10255842.2020.1714911⟩. ⟨hal-04826159⟩
  • Jayendiran Raja, Francesca Condemi, Salvatore Campisi, Magalie Viallon, Pierre Croisille, et al.. Correlation between wall shear stress and wall rupture properties in ascending thoracic aortic aneurysms. Computer Methods in Biomechanics and Biomedical Engineering, 2020, 22 (sup1), pp.S58-S59. ⟨10.1080/10255842.2020.1713478⟩. ⟨hal-04826095⟩
  • Aymeric Pionteck, Baptiste Pierrat, Sébastien Gorges, Jean-Noël Albertini, Stéphane Avril. A Fast Method of Virtual Stent Graft Deployment for Computer Assisted EVAR. Computational Biomechanics for Medicine, Springer International Publishing, pp.147-169, 2020, ⟨10.1007/978-3-030-42428-2_10⟩. ⟨hal-04826083⟩
  • Miquel Aguirre, Stéphane Avril. An implicit 3D corotational formulation for frictional contact dynamics of beams against rigid surfaces using discrete signed distance fields. Computer Methods in Applied Mechanics and Engineering, 2020, 371, pp.113275. ⟨10.1016/j.cma.2020.113275⟩. ⟨hal-04826065⟩
  • Matthew R Bersi, Víctor A Acosta Santamaría, Karl Marback, Paolo Di Achille, Evan H Phillips, et al.. Multimodality Imaging-Based Characterization of Regional Material Properties in a Murine Model of Aortic Dissection. Scientific Reports, 2020, 10 (1), pp.9244. ⟨10.1038/s41598-020-65624-7⟩. ⟨inserm-02885566⟩
  • Lucie Derycke, Jean Sénémaud, David Perrin, Stéphane Avril, Pascal Desgranges, et al.. Patient Specific Computer Modelling for Automated Sizing of Fenestrated Stent Grafts. European Journal of Vascular and Endovascular Surgery, 2020, 59 (2), pp.237-246. ⟨10.1016/j.ejvs.2019.10.009⟩. ⟨hal-04826077⟩