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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289 documents

  • Claudie Petit, Ali-Akbar Karkhaneh Yousefi, Marine Guilbot, Vincent Barnier, Stéphane Avril. Atomic Force Microscopy Stiffness Mapping in Human Aortic Smooth Muscle Cells. Journal of Biomechanical Engineering, 2022, 144 (8), ⟨10.1115/1.4053657⟩. ⟨hal-04826012⟩
  • Dar Weiss, Aaron Long, George Tellides, Stéphane Avril, Jay Humphrey, et al.. Evolving Mural Defects, Dilatation, and Biomechanical Dysfunction in Angiotensin II–Induced Thoracic Aortopathies. Arteriosclerosis, Thrombosis, and Vascular Biology, 2022, 42 (8), pp.973-986. ⟨10.1161/ATVBAHA.122.317394⟩. ⟨hal-04826008⟩
  • Beatrice Bisighini, Miquel Aguirre, Baptiste Pierrat, David Perrin, Stéphane Avril. EndoBeams.jl: A Julia finite element package for beam-to-surface contact problems in cardiovascular mechanics. Advances in Engineering Software, 2022, 171, pp.103173. ⟨10.1016/j.advengsoft.2022.103173⟩. ⟨hal-04826005⟩
  • André Mourato, Rodrigo Valente, José Xavier, Moisés Brito, Stéphane Avril, et al.. Computational Modelling and Simulation of Fluid Structure Interaction in Aortic Aneurysms: A Systematic Review and Discussion of the Clinical Potential. Applied Sciences, 2022, 12 (16), pp.8049. ⟨10.3390/app12168049⟩. ⟨hal-04826006⟩
  • Shaojie Zhang, Joan D Laubrie, S. Jamaleddin Mousavi, Stéphane Avril, Sabrina Ben Ahmed. Patient-specific Finite Element Modeling of Aneurysmal dilatation after chronic type B aortic dissection. Computational Biomechanics for Medicine, Springer International Publishing, pp.15-38, 2022, ⟨10.1007/978-3-031-09327-2_2⟩. ⟨hal-03926741⟩
  • Jianwei Deng, Xu Guo, Yue Mei, Stephane Avril. FEniCS implementation of the Virtual Fields Method (VFM) for nonhomogeneous hyperelastic identification. Advances in Software Engineering, In press. ⟨hal-03836286⟩
  • Fanny Lorandon, Simon Rinckenbach, Nicla Settembre, Eric Steinmetz, Lucie Salomon Du Mont, et al.. Stress Analysis in AAA does not Predict Rupture Location Correctly in Patients with Intraluminal Thrombus. Annals of Vascular Surgery, 2022, 79, pp.279-289. ⟨10.1016/j.avsg.2021.08.008⟩. ⟨hal-04826023⟩
  • Ondřej Lisický, Stéphane Avril, Bastien Eydan, Baptiste Pierrat, Jiří Burša. Evaluation of image registration for measuring deformation fields in soft tissue mechanics. Strain, 2022, 58 (4), ⟨10.1111/str.12424⟩. ⟨hal-03926799⟩
  • Xuehuan He, Stéphane Avril, Jia Lu. Estimating aortic thoracic aneurysm rupture risk using tension–strain data in physiological pressure range: an in vitro study. Biomechanics and Modeling in Mechanobiology, 2021, 20 (2), pp.683-699. ⟨10.1007/s10237-020-01410-8⟩. ⟨hal-04826053⟩
  • Mirunalini Thirugnanasambandam, Tejas Canchi, Senol Piskin, Christof Karmonik, Ethan Kung, et al.. Design, Development, and Temporal Evaluation of a Magnetic Resonance Imaging-Compatible In Vitro Circulation Model Using a Compliant Abdominal Aortic Aneurysm Phantom. Journal of Biomechanical Engineering, 2021, 143 (5), ⟨10.1115/1.4049894⟩. ⟨hal-04826049⟩