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      <div class="TdmEntry">Research Program<ul><li><a href="uid8.html&#10;&#9;&#9;  ">Complex models for the
propagation of cardiac action potentials</a></li><li><a href="uid11.html&#10;&#9;&#9;  ">Simplified models and inverse
problems</a></li><li><a href="uid17.html&#10;&#9;&#9;  ">Numerical techniques</a></li><li><a href="uid20.html&#10;&#9;&#9;  ">Cardiac Electrophysiology at
the Microscopic Scale</a></li></ul></div>
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Simulator</a></li><li><a href="uid42.html&#10;&#9;&#9;  ">IDAM</a></li><li><a href="uid44.html&#10;&#9;&#9;  ">Platforms</a></li></ul></div>
      <div class="TdmEntry">New Results<ul><li><a href="uid55.html&#10;&#9;&#9;  ">Convergence analysis of a
bidomain-bath model</a></li><li><a href="uid56.html&#10;&#9;&#9;  ">An exponential Adams–Bashforth ODE
solver for stiff problems</a></li><li><a href="uid57.html&#10;&#9;&#9;  ">Homogeneous Neumann condition on the
torso for solving inverse problems</a></li><li><a href="uid58.html&#10;&#9;&#9;  ">Adaptive placement of the
pseudo-boundaries improves the conditioning of the inverse
problem</a></li><li><a href="uid59.html&#10;&#9;&#9;  ">Reduced sodium current in the lateral
ventricular wall induces J waves in the ECG</a></li><li><a href="uid60.html&#10;&#9;&#9;  ">Atrial fibrillation due to complex
geometry</a></li></ul></div>
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	    Raweb 
	    2016</a> | <a href="http://www.inria.fr/en/teams/carmen">Presentation of the Project-Team CARMEN</a> | <a href="https://team.inria.fr/carmen/">CARMEN Web Site
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        <h2>Section: 
      Highlights of the Year</h2>
        <h3 class="titre3">Highlights of the Year</h3>
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        <h4 class="titre4">Events</h4>
        <p>On 4 November 2016 the new building of the IHU Liryc was officially
opened in the presence of representatives from the municipal,
departmental, regional, and national authorities.</p>
        <p>On 9 December 2016 A. Davidović defended her thesis Multiscale
Mathematical Modeling of Structural Heterogeneities in Cardiac
Electrophysiology.</p>
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        <h4 class="titre4">Recruitments</h4>
        <p>M. Potse, whose work had been funded by IHU Liryc since 2013, has
become a full-time member of the Carmen team and has won an Inria
Advanced Research Position in June 2016. He will continue his
numerical studies on cardiac sudden-death syndromes and atrial
fibrillation and is developing a new project on the application of
electrocardiographic inverse methods in the catheterization
laboratory.</p>
        <p>We recruited the engineer P. Migerditichan; she started working in
November 2016 on a project named EPICARDial electrical signals
VIZualisation (EPICARD-VIZ). The aim of this project is to build a
software solution for the electrocardiographic inverse problem,
coded in the MUSIC platform. The goal of the project is twofold:
First, we aim at building a semi-automatic functionality that allows
to obtain meshes of the epicardium, torso, lungs, liver, and
skeletal muscle with minimal human interaction. Second, our aim is
to include a dense linear algebra library and to construct a
computational framework in which we will be able to compare
different methods of solving the inverse problem.</p>
        <p>After the completion of her PhD thesis A. Davidović was hired as an
Engineer, granted by the ANR HR-CEM project. She continues her work
on multiscale modelling of heterogeneities in cardiac tissue. She is
going to use the experimental high-resolution MRI data on animal and
human hearts that are provided by the imaging team of IHU Liryc. By
means of image analysis and numerical simulations she is going to
study the effects of fibrotic, fatty, and other kinds of tissue on
AP propagation.</p>
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