Rabbit-specific ventricular model of cardiac electrophysiological function including specialized conduction system.
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D Gavaghan | P Kohl | R Bordas | K Gillow | Q Lou | I R Efimov | V Grau | B Rodriguez | V. Grau | B. Rodríguez | D. Gavaghan | Q. Lou | R. Bordas | P. Kohl | K. Gillow | I. Efimov
[1] M P Nash,et al. Experiment-model interaction for analysis of epicardial activation during human ventricular fibrillation with global myocardial ischaemia. , 2011, Progress in biophysics and molecular biology.
[2] R. Plonsey. Bioelectric sources arising in excitable fibers (Alza lecture) , 2006, Annals of Biomedical Engineering.
[3] Mark Potse,et al. A Comparison of Monodomain and Bidomain Reaction-Diffusion Models for Action Potential Propagation in the Human Heart , 2006, IEEE Transactions on Biomedical Engineering.
[4] J. Ross,et al. Fiber Orientation in the Canine Left Ventricle during Diastole and Systole , 1969, Circulation research.
[5] J. Keener,et al. A numerical method for the solution of the bidomain equations in cardiac tissue. , 1998, Chaos.
[6] Cindy Grimm,et al. Three-dimensional panoramic imaging of cardiac arrhythmias in rabbit heart. , 2007, Journal of biomedical optics.
[7] S. Sass,et al. Histochemical and ultrastructural characterisation of an arrhythmogenic substrate in ischemic pig heart. , 2002, Acta histochemica.
[8] Natalia A Trayanova,et al. Differences Between Left and Right Ventricular Chamber Geometry Affect Cardiac Vulnerability to Electric Shocks , 2005, Circulation research.
[9] Edward J. Vigmond,et al. Construction of a Computer Model to Investigate Sawtooth Effects in the Purkinje System , 2007, IEEE Transactions on Biomedical Engineering.
[10] James P. Keener,et al. Mathematical physiology , 1998 .
[11] B. Rodriguez,et al. Integrated approach for the study of anatomical variability in the cardiac Purkinje system: From high resolution MRI to electrophysiology simulation , 2010, 2010 Annual International Conference of the IEEE Engineering in Medicine and Biology.
[12] Philip V. Bayly,et al. Quantitative Panoramic Imaging of Epicardial Electrical Activity , 2008, Annals of Biomedical Engineering.
[13] M. Silverman,et al. Why does the heart beat? The discovery of the electrical system of the heart. , 2006, Circulation.
[14] Arthur W. Toga,et al. Efficient Skeletonization of Volumetric Objects , 1999, IEEE Trans. Vis. Comput. Graph..
[15] Robert H. Anderson. Das reizleitungssystem des säugetierherzens: S. Tawara Gustav Fischer, Jena, 1906; 193 pp.; , 1988 .
[16] Gary R. Mirams,et al. Phenomenological modeling of cell-to-cell and beat-to-beat variability in isolated Guinea Pig ventricular myocytes , 2010, 2010 Annual International Conference of the IEEE Engineering in Medicine and Biology.
[17] N. Otsu. A threshold selection method from gray level histograms , 1979 .
[18] René Vidal,et al. Estimation of multimodal orientation distribution functions from cardiac MRI for tracking Purkinje fibers through branchings , 2009, 2009 IEEE International Symposium on Biomedical Imaging: From Nano to Macro.
[19] A. Panfilov,et al. Modelling of the ventricular conduction system. , 2008, Progress in biophysics and molecular biology.
[20] Blanca Rodriguez. Multiscale modelling and simulation investigation of variability and abnormalities in repolarization: Application to drug cardiotoxicity , 2010, 2010 Computing in Cardiology.
[21] V Zimmerman,et al. Modeling the Purkinje conduction system with a non deterministic rule based iterative method , 2009, 2009 36th Annual Computers in Cardiology Conference (CinC).
[22] S. Abboud,et al. Simulation of cardiac activity and the ECG using a heart model with a reaction-diffusion action potential. , 1996, Medical engineering & physics.
[23] David Gavaghan,et al. Three‐Dimensional Models of Individual Cardiac Histoanatomy: Tools and Challenges , 2006, Annals of the New York Academy of Sciences.
[24] P.M. Boyle,et al. Behaviour of the Purkinje System During Defibrillation-Strength Shocks , 2007, 2007 29th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[25] J. Restrepo,et al. A rabbit ventricular action potential model replicating cardiac dynamics at rapid heart rates. , 2007, Biophysical journal.
[26] Kiyoshi Nakazawa,et al. Intramural Purkinje Cell Network of Sheep Ventricles as the Terminal Pathway of Conduction System , 2009, Anatomical record.
[27] Jian Huang,et al. Chemical ablation of the Purkinje system causes early termination and activation rate slowing of long-duration ventricular fibrillation in dogs. , 2008, American journal of physiology. Heart and circulatory physiology.
[28] Jonathan P. Whiteley,et al. An Efficient Numerical Technique for the Solution of the Monodomain and Bidomain Equations , 2006, IEEE Transactions on Biomedical Engineering.
[29] A.E. Pollard,et al. The construction of an anatomically based model of the human ventricular conduction system , 1990, IEEE Transactions on Biomedical Engineering.
[30] Alejandro F. Frangi,et al. Effects of the Purkinje System and Cardiac Geometry on Biventricular Pacing: A Model Study , 2010, Annals of Biomedical Engineering.
[31] Chris Pudney,et al. Distance-Ordered Homotopic Thinning: A Skeletonization Algorithm for 3D Digital Images , 1998, Comput. Vis. Image Underst..
[32] Alberto Corrias,et al. Ionic mechanisms of electrophysiological properties and repolarization abnormalities in rabbit Purkinje fibers. , 2011, American journal of physiology. Heart and circulatory physiology.
[33] R. Holland,et al. The QRS complex during myocardial ischemia. An experimental analysis in the porcine heart. , 1976, The Journal of clinical investigation.
[34] M. Kervancıoğlu,et al. Echocardiographic and morphologic examination of left ventricular false tendons in human and animal hearts , 2003, Clinical anatomy.
[35] Takeo Igarashi,et al. A procedural method for modeling the purkinje fibers of the heart. , 2008, The journal of physiological sciences : JPS.
[36] A. Corrias,et al. Arrhythmic risk biomarkers for the assessment of drug cardiotoxicity: from experiments to computer simulations , 2010, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[37] Gernot Plank,et al. Development of an anatomically detailed MRI-derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function , 2009, American journal of physiology. Heart and circulatory physiology.
[38] Alejandro F Frangi,et al. Flexible modeling for anatomically-based cardiac conduction system construction , 2010, 2010 Annual International Conference of the IEEE Engineering in Medicine and Biology.
[39] S Tawara,et al. The conduction system of the mammalian heart : an anatomico-histological study of the atrioventricular bundle and the Purkinje fibers , 2000 .
[40] Yves Coudière,et al. A mathematical model of the ventricular conduction system , 2010 .
[41] A. Wilde,et al. Morphology of electrophysiologically identified junctions between Purkinje fibers and ventricular muscle in rabbit and pig hearts. , 1991, Circulation research.
[42] Gernot Plank,et al. Image-based models of cardiac structure with applications in arrhythmia and defibrillation studies. , 2009, Journal of electrocardiology.
[43] L. Clerc. Directional differences of impulse spread in trabecular muscle from mammalian heart. , 1976, The Journal of physiology.
[44] Robert H. Anderson,et al. Distribution of the Purkinje fibres in the sheep heart , 1999, The Anatomical record.
[45] M. Scheinman,et al. Role of the His-Purkinje system in the genesis of cardiac arrhythmia. , 2009, Heart rhythm.
[46] David Gavaghan,et al. Generation of histo-anatomically representative models of the individual heart: tools and application , 2009, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[47] Edward Vigmond,et al. Towards predictive modelling of the electrophysiology of the heart , 2009, Experimental physiology.
[48] Blanca Rodríguez,et al. Systematic characterization of the ionic basis of rabbit cellular electrophysiology using two ventricular models. , 2011, Progress in biophysics and molecular biology.
[49] Benjamin S. Kirk,et al. Library for Parallel Adaptive Mesh Refinement / Coarsening Simulations , 2006 .
[50] Nils J. Nilsson,et al. A Formal Basis for the Heuristic Determination of Minimum Cost Paths , 1968, IEEE Trans. Syst. Sci. Cybern..
[51] S. Neubauer,et al. Identification of cardiac malformations in mice lacking Ptdsr using a novel high-throughput magnetic resonance imaging technique , 2004, BMC Developmental Biology.
[52] Takumi Washio,et al. A Parallel Multilevel Technique for Solving the Bidomain Equation on a Human Heart with Purkinje Fibers and a Torso Model , 2008, SIAM J. Sci. Comput..
[53] F. Fenton,et al. Minimal model for human ventricular action potentials in tissue. , 2008, Journal of theoretical biology.
[54] J Jalife,et al. Purkinje-muscle reentry as a mechanism of polymorphic ventricular arrhythmias in a 3-dimensional model of the ventricles. , 1998, Circulation research.
[55] Blanca Rodriguez,et al. Synthesis of voltage-sensitive optical signals: application to panoramic optical mapping. , 2006, Biophysical journal.