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Appears in collections : CEMRACS - Summer school: Numerical and mathematical modeling for biological and medical applications: deterministic, probabilistic and statistical descriptions / CEMRACS - École d'été : Modélisation numérique et mathématique pour la biologie et la médecine : descriptions déterministes, probabilistes et statistiques, Ecoles de recherche

I will introduce the topic of computational cardiac electrophysiology and electrocardiograms simulation. Then I will address some questions of general interest, like the modeling of variability and the extraction of features from biomedical signals, relevant for identification and classification. I will illustrate this research with an example of application to the pharmaceutical industry.

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Citation data

  • DOI 10.24350/CIRM.V.19422903
  • Cite this video Gerbeau, Jean-Frédéric (19/07/2018). Fluid-structure interaction in the cardiovascular system. Lecture 1: Forward problems. CIRM. Audiovisual resource. DOI: 10.24350/CIRM.V.19422903
  • URL https://dx.doi.org/10.24350/CIRM.V.19422903

Bibliography

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  • Burman, E., & Fernández, M.A. (2014). Explicit strategies for incompressible fluid-structure interaction problems: Nitsche type mortaring versus Robin-Robin coupling. International Journal for Numerical Methods in Engineering, 97(10), 739-758 - https://doi.org/10.1002/nme.4607
  • Farhat, C., Lesoinne, M., & LeTallec, P. (1998). Load and motion transfer algorithms for fluid/structure interaction problems with non-matching discrete interfaces: Momentum and energy conservation, optimal discretization and application to aeroelasticity. Computer Methods in Applied Mechanics and Engineering, 157(1-2), 95-114 - https://doi.org/10.1016/S0045-7825(97)00216-8
  • Fernández, M.A. (2013). Incremental displacement-correction schemes for incompressible fluid-structure interaction. Stability and convergence analysis. Numerische Mathematik, 123(1), 21-65 - https://doi.org/10.1007/s00211-012-0481-9
  • Guidoboni, G., Glowinski, R., Cavallini, N., & Canic, S. (2009). Stable loosely-coupled-type algorithm for fluid-structure interaction in blood flow. Journal of Computational Physics, 228(18), 6916-6937 - https://doi.org/10.1016/j.jcp.2009.06.007
  • Le Tallec, P., & Mouro, J. (2001). Fluid-structure interaction with large structural displacements. Computer Methods in Applied Mechanics and Engineering, 190(24-25), 3039-3067 - https://doi.org/10.1016/S0045-7825(00)00381-9

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