Techniques for automated local activation time annotation and conduction velocity estimation in cardiac mapping
暂无分享,去创建一个
Spencer J. Sherwin | Caroline H. Roney | Fu Siong Ng | Nicholas S. Peters | Chris D. Cantwell | Jennifer H. Siggers | S. Sherwin | N. Peters | C. Cantwell | J. Siggers | F. Ng | C. Roney
[1] R. Ideker,et al. Estimation of conduction velocity vector fields from epicardial mapping data , 1998, IEEE Transactions on Biomedical Engineering.
[2] Nicholas S Peters,et al. Electrophysiological Abnormalities Occur Prior to the Development of Clinical Episodes of Atrial Fibrillation: Observations from Human Epicardial Mapping , 2008, Pacing and clinical electrophysiology : PACE.
[3] G. Ndrepepa,et al. Activation Time Determination by High‐Resolution Unipolar and Bipolar Extracellular Electrograms in the Canine Heart , 1995, Journal of cardiovascular electrophysiology.
[4] P V Bayly,et al. Quantitative techniques for analyzing high-resolution cardiac-mapping data. , 1998, IEEE engineering in medicine and biology magazine : the quarterly magazine of the Engineering in Medicine & Biology Society.
[5] R C Barr,et al. Automated production of contour maps for electrophysiology. II. Triangulation, verification, and organization of the geometric model. , 1980, Computers and biomedical research, an international journal.
[6] Olaf Dössel,et al. Non-Linear Energy Operator for the Analysis of Intracardial Electrograms , 2009 .
[7] Phang Boon Lim,et al. Cardiac ripple mapping: a novel three-dimensional visualization method for use with electroanatomic mapping of cardiac arrhythmias. , 2009, Heart rhythm.
[8] Cristian Lorenz,et al. Conduction Velocity Restitution of the Human Atrium—An Efficient Measurement Protocol for Clinical Electrophysiological Studies , 2011, IEEE Transactions on Biomedical Engineering.
[9] Cristian Lorenz,et al. Comparing measured and simulated wave directions in the left atrium – a workflow for model personalization and validation , 2012, Biomedizinische Technik. Biomedical engineering.
[10] N S Peters,et al. Characteristics of the temporal and spatial excitable gap in anisotropic reentrant circuits causing sustained ventricular tachycardia. , 1998, Circulation research.
[11] J. F. Kaiser,et al. On a simple algorithm to calculate the 'energy' of a signal , 1990, International Conference on Acoustics, Speech, and Signal Processing.
[12] Makoto Oono,et al. Activation patterns and conduction velocity in posterolateral right atrium during typical atrial flutter using an electroanatomic mapping system. , 2008, Circulation journal : official journal of the Japanese Circulation Society.
[13] Bradley J Roth,et al. A Simplified Approach for Simultaneous Measurements of Wavefront Velocity and Curvature in the Heart Using Activation Times , 2013, Cardiovascular engineering and technology.
[14] Edward J. Ciaccio,et al. Automated detection and mapping of electrical activation when electrogram morphology is complex , 2013, Biomed. Signal Process. Control..
[15] B. C. Hill,et al. Effects of bipolar point and line stimulation in anisotropic rabbit epicardium: assessment of the critical radius of curvature for longitudinal block , 1995, IEEE Transactions on Biomedical Engineering.
[16] N S Peters,et al. Mechanisms of Resetting Reentrant Circuits in Canine Ventricular Tachycardia , 2001, Circulation.
[17] Joshua J. E. Blauer,et al. Detection and Quantification of Left Atrial Structural Remodeling With Delayed-Enhancement Magnetic Resonance Imaging in Patients With Atrial Fibrillation , 2009, Circulation.
[18] Sander Verheule,et al. Arrhythmogenic Substrate of the Pulmonary Veins Assessed by High-Resolution Optical Mapping , 2003, Circulation.
[19] Caroline H. Roney,et al. A software platform for the comparative analysis of electroanatomic and imaging data including conduction velocity mapping , 2014, 2014 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[20] A. Zakhor,et al. Deconvolution: a novel signal processing approach for determining activation time from fractionated electrograms and detecting infarcted tissue. , 1996, Circulation.
[21] Shih-Ann Chen,et al. Substrate mapping to detect abnormal atrial endocardium with slow conduction in patients with atypical right atrial flutter. , 2006, Journal of the American College of Cardiology.
[22] A. McCulloch,et al. Model-Based Analysis of Optically Mapped Epicardial Activation Patterns and Conduction Velocity , 2000, Annals of Biomedical Engineering.
[23] S. Labarthe,et al. Global and Directional Activation maps for cardiac mapping in electrophysiology , 2012, 2012 Computing in Cardiology.
[24] Shu Zhang,et al. Estimation of 3-D conduction velocity vector fields from cardiac mapping data , 2000, IEEE Transactions on Biomedical Engineering.
[25] Michela Masè,et al. Velocity Field Analysis of Activation Maps in Atrial Fibrillation A Simulation Study , 2009 .
[26] Jan W. M. Bergmans,et al. Noninvasive Estimation of the Electrohysterographic Action-Potential Conduction Velocity , 2010, IEEE Transactions on Biomedical Engineering.
[27] Fu Siong Ng,et al. Processing and analysis of cardiac optical mapping data obtained with potentiometric dyes. , 2012, American journal of physiology. Heart and circulatory physiology.
[28] P ? ? ? ? ? ? ? % ? ? ? ? , 1991 .
[29] M Delmar,et al. Characterization of Conduction in the Ventricles of Normal and Heterozygous Cx43 Knockout Mice Using Optical Mapping , 1999, Journal of cardiovascular electrophysiology.
[30] B M Steinhaus,et al. Estimating Cardiac Transmembrane Activation and Recovery Times From Unipolar and Bipolar Extracellular Electrograms: A Simulation Study , 1989, Circulation research.
[31] Hui-Nam Pak,et al. Electrophysiologic Characteristics of Complex Fractionated Atrial Electrograms in Patients with Atrial Fibrillation , 2009, Journal of cardiovascular electrophysiology.
[32] R C Barr,et al. Automated production of contour maps for electrophysiology. III. Construction of contour maps. , 1980, Computers and biomedical research, an international journal.
[33] M. Allessie,et al. Automatic mapping of human atrial fibrillation by template matching. , 2006, Heart rhythm.
[34] Edward J Ciaccio,et al. Heterogeneous gap junction remodeling in reentrant circuits in the epicardial border zone of the healing canine infarct. , 2006, Cardiovascular research.
[35] H. Reuter,et al. Voltage-dependent action of tetrodotoxin in mammalian cardiac muscle , 1976, Nature.
[36] S. Swiryn,et al. A method for determining high-resolution activation time delays in unipolar cardiac mapping , 1996, IEEE Transactions on Biomedical Engineering.
[37] Takeshi Tsuchiya,et al. Bipolar electrogram amplitudes in the left atrium are related to local conduction velocity in patients with atrial fibrillation. , 2009, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[38] José Jalife,et al. Rotors and the Dynamics of Cardiac Fibrillation , 2013, Circulation research.
[39] Nicholas S Peters,et al. The Rotor Revolution: Conduction at the Eye of the Storm in Atrial Fibrillation , 2014, Circulation. Arrhythmia and electrophysiology.
[40] Richard A. Gray,et al. Measuring curvature and velocity vector fields for waves of cardiac excitation in 2-D media , 2005, IEEE Transactions on Biomedical Engineering.
[41] Nicholas S. Peters,et al. Mechanisms that initiate ventricular tachycardia in the infarcted human heart , 2010, Heart rhythm.
[42] Sanjiv M. Narayan,et al. Atrial conduction slows immediately before the onset of human atrial fibrillation: a bi-atrial contact mapping study of transitions to atrial fibrillation. , 2012, Journal of the American College of Cardiology.
[43] J Jalife,et al. Wave-front curvature as a cause of slow conduction and block in isolated cardiac muscle. , 1994, Circulation research.
[44] Alan V. Sahakian,et al. A method for determining local activation direction in the atrium , 1994, Proceedings of 16th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[45] Kumaraswamy Nanthakumar,et al. Wave similarity of human ventricular fibrillation from bipolar electrograms. , 2007, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[46] S. Honda,et al. Estimation of conduction velocity distribution by regularized-least-squares method , 1997, IEEE Transactions on Biomedical Engineering.
[47] Caroline H. Roney,et al. A novel method for rotor tracking using bipolar electrogram phase , 2014, Computing in Cardiology 2014.
[48] Nicholas S. Peters,et al. Application of Ripple Mapping to Visualize Slow Conduction Channels Within the Infarct-Related Left Ventricular Scar , 2015, Circulation. Arrhythmia and electrophysiology.
[49] J. Wikswo,et al. Wave vector analysis of cardiac activation patterns , 1999, Proceedings of the First Joint BMES/EMBS Conference. 1999 IEEE Engineering in Medicine and Biology 21st Annual Conference and the 1999 Annual Fall Meeting of the Biomedical Engineering Society (Cat. N.
[50] Masaru Sugimachi,et al. From Cell to Bedside , 2015 .
[51] Prashanthan Sanders,et al. Anatomically determined functional conduction delay in the posterior left atrium relationship to structural heart disease. , 2007, Journal of the American College of Cardiology.
[52] Philip V. Bayly,et al. Quantitative Panoramic Imaging of Epicardial Electrical Activity , 2008, Annals of Biomedical Engineering.
[53] Y Rudy,et al. Mechanistic Insights Into Very Slow Conduction in Branching Cardiac Tissue: A Model Study , 2001, Circulation research.
[54] Nicholas S Peters,et al. Human atrial conduction and arrhythmogenesis correlates with conformational exposure of specific epitopes on the connexin40 carboxyl tail. , 2006, Journal of molecular and cellular cardiology.
[55] Nicholas S Peters,et al. Characteristics of Wavefront Propagation in Reentrant Circuits Causing Human Ventricular Tachycardia , 2002, Circulation.
[56] Mathias Wilhelms,et al. Computational modeling of the human atrial anatomy and electrophysiology , 2012, Medical & Biological Engineering & Computing.
[57] N S Peters,et al. Mechanisms causing sustained ventricular tachycardia with multiple QRS morphologies: results of mapping studies in the infarcted canine heart. , 1997, Circulation.
[58] N S Peters,et al. Disturbed connexin43 gap junction distribution correlates with the location of reentrant circuits in the epicardial border zone of healing canine infarcts that cause ventricular tachycardia. , 1997, Circulation.
[59] Nicolas Smith,et al. Computational methods to reduce uncertainty in the estimation of cardiac conduction properties from electroanatomical recordings , 2014, Medical Image Anal..
[60] Tom Wong,et al. Organizational Index Mapping to Identify Focal Sources During Persistent Atrial Fibrillation , 2014, Journal of cardiovascular electrophysiology.
[61] R C Barr,et al. Extracellular Potentials Related to Intracellular Action Potentials in the Dog Purkinje System , 1972, Circulation research.
[62] Cristian Lorenz,et al. Wave-Direction and Conduction-Velocity Analysis From Intracardiac Electrograms–A Single-Shot Technique , 2010, IEEE Transactions on Biomedical Engineering.
[63] R E Ideker,et al. An automated technique for identification and analysis of activation fronts in a two-dimensional electrogram array. , 1994, Computers and biomedical research, an international journal.
[64] M. Nash,et al. Method for quantifiying conduction velocity during ventricular fibrillation. , 2007, Physical review. E, Statistical, nonlinear, and soft matter physics.
[65] R.P.M. Houben,et al. Processing of intracardiac electrograms in atrial fibrillation , 2006, IEEE Engineering in Medicine and Biology Magazine.
[66] D. Rueckert,et al. Automated analysis of atrial late gadolinium enhancement imaging that correlates with endocardial voltage and clinical outcomes: A 2-center study , 2013, Heart rhythm.
[67] E. McVeigh,et al. Model of reentrant ventricular tachycardia based on infarct border zone geometry predicts reentrant circuit features as determined by activation mapping. , 2007, Heart rhythm.
[68] Dana H. Brooks,et al. Estimation of Cardiac Conduction Velocities Using Small Data Sets , 2004, Annals of Biomedical Engineering.
[69] Tamara N. Fitzgerald,et al. Identification of cardiac rhythm features by mathematical analysis of vector fields , 2005, IEEE Transactions on Biomedical Engineering.
[70] Edward J Ciaccio,et al. The Renin–Angiotensin System Mediates the Effects of Stretch on Conduction Velocity, Connexin43 Expression, and Redistribution in Intact Ventricle , 2010, Journal of cardiovascular electrophysiology.
[71] N S Peters,et al. Catheter ablation of ventricular tachycardia related to coronary artery disease: The role of noncontact mapping , 2000, Current cardiology reports.
[72] Richard D. Walton,et al. A novel approach for deriving global activation maps from non-averaged cardiac optical signals , 2013, 2013 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC).
[73] Ruben Coronel,et al. Activation Delay After Premature Stimulation in Chronically Diseased Human Myocardium Relates to the Architecture of Interstitial Fibrosis , 2001, Circulation.
[74] Nicholas S Peters,et al. Relationship Between Connexin Expression and Gap–Junction Resistivity in Human Atrial Myocardium , 2014, Circulation. Arrhythmia and electrophysiology.
[75] G. Salama,et al. Subthreshold stimulation of Purkinje fibers interrupts ventricular tachycardia in intact hearts. Experimental study with voltage-sensitive dyes and imaging techniques. , 1994, Circulation research.
[76] N. Peters,et al. Characterization of the Electroanatomical Substrate in Human Atrial Fibrillation: The Relationship between Changes in Atrial Volume, Refractoriness, Wavefront Propagation Velocities, and AF Burden , 2007, Journal of cardiovascular electrophysiology.
[77] M J Lab,et al. Electrode for recording direction of activation, conduction velocity, and monophasic action potential of myocardium. , 1997, The American journal of physiology.
[78] A. Kleber,et al. Slow conduction in cardiac tissue, I: effects of a reduction of excitability versus a reduction of electrical coupling on microconduction. , 1998, Circulation research.
[79] Pablo Laguna,et al. Wavelet-based electrogram onset identification for ventricular electroanatomical mapping , 2013, Computing in Cardiology 2013.
[80] C F Pieper,et al. Simultaneously Collected Monopolar and Discrete Bipolar Electrograms: Comparison of Activation Time Detection Algorithms , 1993, Pacing and clinical electrophysiology : PACE.
[81] Edward J Ciaccio,et al. Detection of the diastolic pathway, circuit morphology, and inducibility of human postinfarction ventricular tachycardia from mapping in sinus rhythm. , 2008, Heart rhythm.
[82] Nicholas S. Peters,et al. Mechanism of Pacing-Induced Ventricular Fibrillation in the Infarcted Human Heart , 2004, Circulation.
[83] Frank Weber. Personalizing Simulations of the Human Atria: Intracardiac Measurements, Tissue Conductivities, and Cellular Electrophysiology , 2011 .
[84] J. Spear,et al. Vector mapping of myocardial activation. , 1986, Circulation.
[85] N S Peters,et al. Characteristics of Sinus Rhythm Electrograms at Sites of Ablation of Ventricular Tachycardia Relative to All Other Sites: A Noncontact Mapping Study of the Entire Left Ventricle , 1998, Journal of cardiovascular electrophysiology.
[86] Nadir Saoudi,et al. How Fast Does the Electrical Impulse Travel Within the Myocardium? The Need for a New Clinical Electrophysiology Tool: The Conduction Velocity Mapping , 2014, Journal of cardiovascular electrophysiology.
[87] N S Peters,et al. Feasibility of a noncontact catheter for endocardial mapping of human ventricular tachycardia. , 1999, Circulation.
[88] Y Rudy,et al. Ionic mechanisms of propagation in cardiac tissue. Roles of the sodium and L-type calcium currents during reduced excitability and decreased gap junction coupling. , 1997, Circulation research.
[89] Jeffrey J. Goldberger,et al. Characterization of fibrillatory rhythms by ensemble vector directional analysis. , 2003, American journal of physiology. Heart and circulatory physiology.
[90] M. Allessie,et al. Configuration of unipolar atrial electrograms during electrically induced atrial fibrillation in humans. , 1997, Circulation.
[91] Spencer J. Sherwin,et al. An automated algorithm for determining conduction velocity, wavefront direction and origin of focal cardiac arrhythmias using a multipolar catheter , 2014, 2014 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[92] C F Pieper,et al. Spectral Analysis of Activation Time Sequences , 1994, Pacing and clinical electrophysiology : PACE.
[93] N. Peters,et al. Simultaneous endocardial mapping in the human left ventricle using a noncontact catheter: comparison of contact and reconstructed electrograms during sinus rhythm. , 1998, Circulation.
[94] Nicholas S. Peters,et al. Characterization of Left Atrial Activation in the Intact Human Heart , 2003, Circulation.
[95] Nicholas S Peters,et al. Connexin40 Imparts Conduction Heterogeneity to Atrial Tissue , 2008, Circulation research.
[96] Andrew J. Pullan,et al. An Improved Method for the Estimation and Visualization of Velocity Fields from Gastric High-Resolution Electrical Mapping , 2012, IEEE Transactions on Biomedical Engineering.
[97] Vincent Jacquemet,et al. Genesis of complex fractionated atrial electrograms in zones of slow conduction: a computer model of microfibrosis. , 2009, Heart rhythm.
[98] Spencer J. Sherwin,et al. A novel method for quantifying localised correlation of late-gadolinium intensity with conduction velocity , 2014, Computing in Cardiology 2014.
[99] M. Kimura,et al. High Correlation of Estimated Local Conduction Velocity with Natural Logarithm of Bipolar Electrogram Amplitude in the Reentry Circuit of Atrial Flutter , 2014, Journal of cardiovascular electrophysiology.
[100] B. Roth,et al. Optical measurement of cell-to-cell coupling in intact heart using subthreshold electrical stimulation. , 2001, American journal of physiology. Heart and circulatory physiology.
[101] A. Kleber,et al. Slow conduction in cardiac tissue, II: effects of branching tissue geometry. , 1998, Circulation research.
[102] M. Rosen,et al. Altering Ventricular Activation Remodels Gap Junction Distribution in Canine Heart , 2001, Journal of cardiovascular electrophysiology.
[103] M. Spach,et al. Relating the Sodium Current and Conductance to the Shape of Transmembrane and Extracellular Potentials by Simulation: Effects of Propagation Boundaries , 1985, IEEE Transactions on Biomedical Engineering.
[104] Nicholas S Peters,et al. Relationship Between Gap-Junctional Conductance and Conduction Velocity in Mammalian Myocardium , 2013, Circulation. Arrhythmia and electrophysiology.
[105] Nicholas S Peters,et al. Architectural Correlates of Myocardial Conduction: Changes to the Topography of Cellular Coupling, Intracellular Conductance, and Action Potential Propagation with Hypertrophy in Guinea-Pig Ventricular Myocardium , 2014, Circulation. Arrhythmia and electrophysiology.
[106] Tom Wong,et al. Spatiotemporal Behavior of High Dominant Frequency During Paroxysmal and Persistent Atrial Fibrillation in the Human Left Atrium , 2012, Circulation. Arrhythmia and electrophysiology.
[107] M. Spach,et al. Relating Extracellular Potentials and Their Derivatives to Anisotropic Propagation at a Microscopic Level in Human Cardiac Muscle: Evidence for Electrical Uncoupling of Side‐to‐Side Fiber Connections with Increasing Age , 1986, Circulation research.
[108] Prashanthan Sanders,et al. Fractionated atrial electrograms during sinus rhythm: relationship to age, voltage, and conduction velocity. , 2009, Heart rhythm.
[109] Nicholas S Peters,et al. The effects of carbenoxolone on human myocardial conduction: a tool to investigate the role of gap junctional uncoupling in human arrhythmogenesis. , 2006, Journal of the American College of Cardiology.
[110] Luca Faes,et al. Morphology-based measurement of activation time in human atrial fibrillation , 2002, Computers in Cardiology.
[111] Richard Houben,et al. Algorithmic detection of the beginning and end of bipolar electrograms: Implications for novel methods to assess local activation time during atrial tachycardia , 2013, Biomed. Signal Process. Control..
[112] R. Johansson,et al. A new method for analysis of atrial activation during chronic atrial fibrillation in man , 1996, IEEE Transactions on Biomedical Engineering.
[113] V. Fast,et al. Role of wavefront curvature in propagation of cardiac impulse. , 1997, Cardiovascular research.
[114] M. Krueger. Personalized Multi-Scale Modeling of the Atria: Heterogeneities, Fiber Architecture, Hemodialysis and Ablation Therapy , 2013 .
[115] F. Ravelli,et al. Automatic reconstruction of activation and velocity maps from electro-anatomic data by radial basis functions , 2010, 2010 Annual International Conference of the IEEE Engineering in Medicine and Biology.
[116] Nicholas S Peters,et al. Characterization of the effects of single ventricular extrastimuli on endocardial activation in human infarct-related ventricular tachycardia. , 2007, Journal of the American College of Cardiology.
[117] Alessandro Cristoforetti,et al. Electroanatomic Mapping and Late Gadolinium Enhancement MRI in a Genetic Model of Arrhythmogenic Atrial Cardiomyopathy , 2014, Journal of cardiovascular electrophysiology.
[118] Nicholas S Peters,et al. Relationship Between Connexins and Atrial Activation During Human Atrial Fibrillation , 2004, Journal of cardiovascular electrophysiology.
[119] Nicholas S. Peters,et al. Fractionation of electrograms is caused by colocalized conduction block and connexin disorganization in the absence of fibrosis as AF becomes persistent in the goat model , 2015, Heart rhythm.
[120] Robert Michael Kirby,et al. High-order spectral/hp element discretisation for reaction–diffusion problems on surfaces: Application to cardiac electrophysiology , 2014, J. Comput. Phys..
[121] Fu Siong Ng,et al. Adverse Remodeling of the Electrophysiological Response to Ischemia–Reperfusion in Human Heart Failure Is Associated With Remodeling of Metabolic Gene Expression , 2014, Circulation. Arrhythmia and electrophysiology.
[122] Nicholas S Peters,et al. Relative expression of immunolocalized connexins 40 and 43 correlates with human atrial conduction properties. , 2002, Journal of the American College of Cardiology.
[123] Jack M. Rogers,et al. Combined phase singularity and wavefront analysis for optical maps of ventricular fibrillation , 2004, IEEE Transactions on Biomedical Engineering.
[124] Edward J Ciaccio,et al. Localization of the Isthmus in Reentrant Circuits by Analysis of Electrograms Derived from Clinical Noncontact Mapping During Sinus Rhythm and Ventricular Tachycardia , 2004, Journal of cardiovascular electrophysiology.
[125] Raymond E. Ideker,et al. A quantitative framework for analyzing epicardial activation patterns during ventricular fibrillation , 1997, Annals of Biomedical Engineering.
[126] R. Macleod,et al. Spatial Methods of Epicardial Activation Time Determination in Normal Hearts , 2003, Annals of Biomedical Engineering.
[127] Edward J Ciaccio,et al. Model of Bipolar Electrogram Fractionation and Conduction Block Associated With Activation Wavefront Direction at Infarct Border Zone Lateral Isthmus Boundaries , 2014, Circulation. Arrhythmia and electrophysiology.
[128] Pawel Kuklik,et al. Reconstruction of Instantaneous Phase of Unipolar Atrial Contact Electrogram Using a Concept of Sinusoidal Recomposition and Hilbert Transform , 2015, IEEE Transactions on Biomedical Engineering.
[129] Pipin Kojodjojo,et al. Age‐Related Changes in Human Left and Right Atrial Conduction , 2006, Journal of cardiovascular electrophysiology.
[130] Fu Siong Ng,et al. An automated algorithm for determining conduction velocity, wavefront direction and focal source location using a multipolar catheter , 2014 .
[131] Milos Doroslovacki,et al. Signal Decomposition of Transmembrane Voltage-Sensitive Dye Fluorescence Using a Multiresolution Wavelet Analysis , 2011, IEEE Transactions on Biomedical Engineering.
[132] C. Huang,et al. Determinants of myocardial conduction velocity: implications for arrhythmogenesis , 2013, Front. Physiol..
[133] Michela Masè,et al. Acute Atrial Dilatation Slows Conduction and Increases AF Vulnerability in the Human Atrium , 2011, Journal of cardiovascular electrophysiology.
[134] J. Jalife,et al. Cardiac Electrophysiology: From Cell to Bedside , 1990 .