Modeling Atrial Fiber Orientation in Patient-Specific Geometries: A Semi-automatic Rule-Based Approach

Author:

Krueger Martin W.,Schmidt Viktor,Tobón Catalina,Weber Frank M.,Lorenz Cristian,Keller David U. J.,Barschdorf Hans,Burdumy Michael,Neher Peter,Plank Gernot,Rhode Kawal,Seemann Gunnar,Sanchez-Quintana Damien,Saiz Javier,Razavi Reza,Dössel Olaf

Publisher

Springer Berlin Heidelberg

Reference31 articles.

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2. Vigmond, E.J., Ruckdeschel, R., Trayanova, N.: Reentry in a morphologically realistic atrial model. Cardiovasc Electrophysiol. 12, 1046–1054 (2001)

3. Zemlin, C., Herzel, H., Ho, S., Panfilov, A.: A realistic and efficient model of excitation propagation in the human atria. In: Computer Simulation and Experimental Assessment of Cardiac Electrophysiology, Futura, pp. 29–34 (2001)

4. Jacquemet, V.: A biophysical model of atrial fibrillation and electrograms: formulation, validation and applications. PhD thesis (2004)

5. Tobón, C., Ruiz, C., Heidenreich, E., Hornero, F., Sáiz, J.: Effect of the ectopic beats location on vulnerability to reentries in a three-dimensional realistic model of human atria. Computers in Cardiology 36, 449–452 (2009)

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