]. D. Zipes, J. Jalife, C. Electrophysiology, and C. N. Nowak, Application of the method of fundamental solutions to potential-based inverse electrocardiography Spatial-temporal filter effect in a computer model study of ventricular fibrillation Adaptive local regularization methods for the inverse ECG problem Non-invasive imaging of cardiac activation and recovery Noninvasive three-dimensional activation time imaging of ventricular excitation by means of a heart-excitation model Physiological-model-constrained noninvasive reconstruction of volumetric myocardial transmembrane potentials, Ann. Biomed. Eng. Biomed. Tech. Prog. Biophys. Mol. Biol. Ann. Biomed. Eng. Phys. Med. Biol. IEEE Trans. Biomed. Eng, vol.348, issue.57 2, pp.1272-88, 1998.

C. Han, Noninvasive three-dimensional cardiac activation imaging from body surface potential maps: a computational and experimental study on a rabbit model Imaging cardiac activation sequence during ventricular tachycardia in a canine model of nonischemic heart failure Noninvasive electrocardiographic imaging of arrhythmogenic substrates in humans, IEEE Trans. Med. Imaging Circ. Res, vol.2710, issue.112 5, pp.1622-1652, 2008.

]. K. Ten-tusscher, A model for human ventricular tissue, AJP: Heart and Circulatory Physiology, vol.286, issue.4, pp.1573-1589, 2004.
DOI : 10.1152/ajpheart.00794.2003

M. Potse, A Comparison of Monodomain and Bidomain Reaction-Diffusion Models for Action Potential Propagation in the Human Heart, IEEE Transactions on Biomedical Engineering, vol.53, issue.12, pp.2425-2460, 2006.
DOI : 10.1109/TBME.2006.880875

D. Krause, Hybrid Parallelization of a Large-Scale Heart Model, " in Facing the Multicore-Challenge II: Aspects of New Paradigms and Technologies in Parallel Computing, LNCS, vol.7174, pp.120-132, 2012.

]. D. Shepard, A two-dimensional interpolation function for irregularly-spaced data, Proceedings of the 1968 23rd ACM national conference on -, pp.517-524, 1968.
DOI : 10.1145/800186.810616

]. C. Cantwell, Techniques for automated local activation time annotation and conduction velocity estimation in cardiac mapping, Computers in Biology and Medicine, vol.65, 2015.
DOI : 10.1016/j.compbiomed.2015.04.027

URL : http://doi.org/10.1016/j.compbiomed.2015.04.027

T. N. Fitzgerald, Estimation of cardiac conduction velocities using small data sets, Computers in Cardiology 2001. Vol.28 (Cat. No.01CH37287), pp.250-261, 2003.
DOI : 10.1109/CIC.2001.977579

S. M. Shors, A method for determining high-resolution activation time delays in unipolar cardiac mapping, IEEE Transactions on Biomedical Engineering, vol.43, issue.12, pp.1192-1196, 1996.
DOI : 10.1109/10.544343

A. C. Aitken-]-r, D. Carroll, and . Ruppert, IV.???On Least Squares and Linear Combination of Observations., Proceedings of the Royal Society of Edinburgh, vol.lxiv, pp.42-48, 1936.
DOI : 10.1214/aoms/1177732930

T. S. Breusch, A. R. Pagan-]-r, and . Walton, A Simple Test for Heteroscedasticity and Random Coefficient Variation A novel approach for deriving global activation maps from non-averaged cardiac optical signals Characterization of conduction in the ventricles of normal and heterozygous Cx43 knockout mice using optical mapping, 35th Annu. Int. Conf, pp.1287-1294, 1979.

]. A. Auricchio, Characterization of Left Ventricular Activation in Patients With Heart Failure and Left Bundle-Branch Block, Circulation, vol.109, issue.9, pp.1133-1139, 2004.
DOI : 10.1161/01.CIR.0000118502.91105.F6

J. L. Sapp, Inverse Solution Mapping of Epicardial Potentials: Quantitative Comparison With Epicardial Contact Mapping, Circulation: Arrhythmia and Electrophysiology, vol.5, issue.5, pp.1001-1009, 2005.
DOI : 10.1161/CIRCEP.111.970160

F. Del-carpio and . Munoz, Teaching Points With 3-Dimensional Mapping of Cardiac Arrhythmias: Taking Points: Activation Mapping, Circulation: Arrhythmia and Electrophysiology, vol.4, issue.3, pp.22-25, 2011.
DOI : 10.1161/CIRCEP.110.960351