Ablation of Rotor Domains Effectively Modulates Dynamics of Human: Long-Standing Persistent Atrial Fibrillation
暂无分享,去创建一个
César Morís | Diego Pérez | David Calvo | D. Calvo | J. Rubín | C. Morís | José Rubín | Diego Pérez
[1] M. Ezekowitz,et al. 2014 AHA/ACC/HRS guideline for the management of patients with atrial fibrillation: a report of the American College of Cardiology/American Heart Association Task Force on practice guidelines and the Heart Rhythm Society. , 2014, Circulation.
[2] Sanjiv M Narayan,et al. Ablation of rotor and focal sources reduces late recurrence of atrial fibrillation compared with trigger ablation alone: extended follow-up of the CONFIRM trial (Conventional Ablation for Atrial Fibrillation With or Without Focal Impulse and Rotor Modulation). , 2014, Journal of the American College of Cardiology.
[3] Robert H. Anderson,et al. Atrial structure and fibres: morphologic bases of atrial conduction. , 2002, Cardiovascular research.
[4] P. Nery,et al. Efficacy and safety of driver‐guided catheter ablation for atrial fibrillation: A systematic review and meta‐analysis , 2017, Journal of cardiovascular electrophysiology.
[5] Ashok J. Shah,et al. Driver Domains in Persistent Atrial Fibrillation , 2014, Circulation.
[6] M. Ezekowitz,et al. 2014 AHA/ACC/HRS guideline for the management of patients with atrial fibrillation: executive summary: a report of the American College of Cardiology/American Heart Association Task Force on practice guidelines and the Heart Rhythm Society. , 2014, Circulation.
[7] Prashanthan Sanders,et al. Spectral Analysis Identifies Sites of High-Frequency Activity Maintaining Atrial Fibrillation in Humans , 2005, Circulation.
[8] S. Landas,et al. Spatial Distribution of Fibrosis Governs Fibrillation Wave Dynamics in the Posterior Left Atrium During Heart Failure , 2007, Circulation research.
[9] Kalyanam Shivkumar,et al. Quantitative Analysis of Localized Sources Identified by Focal Impulse and Rotor Modulation Mapping in Atrial Fibrillation , 2015, Circulation. Arrhythmia and electrophysiology.
[10] Jichao Zhao,et al. Atrial fibrillation driven by micro-anatomic intramural re-entry revealed by simultaneous sub-epicardial and sub-endocardial optical mapping in explanted human hearts. , 2015, European heart journal.
[11] Sanghamitra Mohanty,et al. Acute and early outcomes of focal impulse and rotor modulation (FIRM)-guided rotors-only ablation in patients with nonparoxysmal atrial fibrillation. , 2016, Heart rhythm.
[12] O. Berenfeld,et al. Letter by Jalife et al Regarding Article, "Quantitative Analysis of Localized Sources Identified by Focal Impulse and Rotor Modulation Mapping in Atrial Fibrillation". , 2015, Circulation. Arrhythmia and electrophysiology.
[13] Omer Berenfeld,et al. Attraction of rotors to the pulmonary veins in paroxysmal atrial fibrillation: a modeling study. , 2014, Biophysical journal.
[14] H. Pak,et al. The Spatiotemporal Stability of Dominant Frequency Sites in In-Silico Modeling of 3-Dimensional Left Atrial Mapping of Atrial Fibrillation , 2016, PloS one.
[15] Ulrich Schotten,et al. Electropathological Substrate of Longstanding Persistent Atrial Fibrillation in Patients With Structural Heart Disease: Epicardial Breakthrough , 2010, Circulation.
[16] José Jalife,et al. Spectral analysis of electrograms in a substrate modified by radiofrequency ablation reveals similarities between organized and disorganized atrial rhythms. , 2014, Heart rhythm.
[17] R. Gray,et al. Spatial and temporal organization during cardiac fibrillation , 1998, Nature.
[18] M. Mansour,et al. Left-to-Right Gradient of Atrial Frequencies During Acute Atrial Fibrillation in the Isolated Sheep Heart , 2001, Circulation.
[19] Stanley Nattel,et al. Demystifying rotors and their place in clinical translation of atrial fibrillation mechanisms , 2017, Nature Reviews Cardiology.
[20] E. Daoud,et al. Identification of Repetitive Activation Patterns Using Novel Computational Analysis of Multielectrode Recordings During Atrial Fibrillation and Flutter in Humans. , 2017, JACC. Clinical electrophysiology.
[21] Gopi Dandamudi,et al. Clinical Benefit of Ablating Localized Sources for Human Atrial Fibrillation: The Indiana University FIRM Registry. , 2017, Journal of the American College of Cardiology.
[22] RaviMandapati,et al. Stable Microreentrant Sources as a Mechanism of Atrial Fibrillation in the Isolated Sheep Heart , 2000 .
[23] D. V. Van Wagoner,et al. Adenosine-Induced Atrial Fibrillation: Localized Reentrant Drivers in Lateral Right Atria due to Heterogeneous Expression of Adenosine A1 Receptors and GIRK4 Subunits in the Human Heart. , 2016, Circulation.
[24] Prashanthan Sanders,et al. Approaches to catheter ablation for persistent atrial fibrillation. , 2015, The New England journal of medicine.
[25] Hubert Cochet,et al. Complexity and Distribution of Drivers in Relation to Duration of Persistent Atrial Fibrillation. , 2017, Journal of the American College of Cardiology.
[26] F. Schlindwein,et al. Distinctive Patterns of Dominant Frequency Trajectory Behavior in Drug‐Refractory Persistent Atrial Fibrillation: Preliminary Characterization of Spatiotemporal Instability , 2014, Journal of cardiovascular electrophysiology.
[27] Michel Haïssaguerre,et al. Disparate evolution of right and left atrial rate during ablation of long-lasting persistent atrial fibrillation. , 2010, Journal of the American College of Cardiology.
[28] O. Berenfeld,et al. Mechanistic Comparison of "Nearly Missed" Versus "On-Target" Rotor Ablation. , 2014, JACC. Clinical electrophysiology.
[29] Vijay Devabhaktuni,et al. Long-Term Frequency Gradients During Persistent Atrial Fibrillation in Sheep Are Associated With Stable Sources in the Left Atrium , 2012, Circulation. Arrhythmia and electrophysiology.
[30] F. Fernández‐Avilés,et al. High-rate pacing-induced atrial fibrillation effectively reveals properties of spontaneously occurring paroxysmal atrial fibrillation in humans. , 2012, 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.
[31] Ashok J. Shah,et al. Intermittent drivers anchoring to structural heterogeneities as a major pathophysiological mechanism of human persistent atrial fibrillation , 2016, The Journal of physiology.
[32] Wouter-Jan Rappel,et al. Mechanisms for the Termination of Atrial Fibrillation by Localized Ablation: Computational and Clinical Studies , 2015, Circulation. Arrhythmia and electrophysiology.
[33] Ulrich Schotten,et al. Electropathological Substrate of Long-Standing Persistent Atrial Fibrillation in Patients With Structural Heart Disease: Longitudinal Dissociation , 2010, Circulation. Arrhythmia and electrophysiology.
[34] Jennifer G. Robinson,et al. ACCF/AHA TASK FORCE MEMBERS , 2013 .
[35] O. Berenfeld,et al. Wavebreak Formation During Ventricular Fibrillation in the Isolated, Regionally Ischemic Pig Heart , 2003, Circulation research.
[36] Paul J. Wang,et al. Two Independent Mapping Techniques Identify Rotational Activity Patterns at Sites of Local Termination During Persistent Atrial Fibrillation , 2017, Journal of cardiovascular electrophysiology.
[37] B. Knight,et al. Approaches to catheter ablation of persistent atrial fibrillation. , 2009, Heart rhythm.
[38] José Jalife,et al. Comparison of radiofrequency catheter ablation of drivers and circumferential pulmonary vein isolation in atrial fibrillation: a noninferiority randomized multicenter RADAR-AF trial. , 2014, Journal of the American College of Cardiology.