Research map: Simulating reentrant mechanisms under structural remodeling: A computational model based on complex-order operators
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Papers in this map
Pathophysiological Mechanisms of Atrial Fibrillation: A Translational Appraisal
· Ulrich Schotten · 2011 · 1297 citations · Cited by this paper
Simultaneous parameter and function discovery in differential equations using physics-informed neural networks
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· Michele Miragoli · 2006 · 394 citations · Cited by this paper
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· Marcos Daccarett · 2011 · 389 citations · Cited by this paper
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· Sanne de Jong · 2010 · 363 citations · Cited by this paper
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· Christian Sohns · 2019 · 280 citations · Cited by this paper
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· Alfonso Bueno‐Orovio · 2014 · 216 citations · Cited by this paper
A delay differential model for antiviral treatment and rebound dynamics
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Experimental and Theoretical Analysis of Phase Singularity Dynamics in Cardiac Tissue
· Mark‐Anthony Bray · 2001 · 144 citations · Cited by this paper
Dynamics in an almost periodic metapopulation with competition and habitat destruction: An exponential dichotomy based approach
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The Role of Fibroblasts in Complex Fractionated Electrograms During Persistent/Permanent Atrial Fibrillation
· Takashi Ashihara · 2011 · 141 citations · Cited by this paper
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Histological validation of atrial structural remodelling in patients with atrial fibrillation
· Yuya Takahashi · 2023 · 139 citations · Cited by this paper
Electrotonic Coupling between Human Atrial Myocytes and Fibroblasts Alters Myocyte Excitability and Repolarization
· Mary M. Maleckar · 2009 · 134 citations · Cited by this paper
Computational modeling of cardiac electrophysiology and arrhythmogenesis: toward clinical translation
· Natalia A. Trayanova · 2023 · 124 citations · Cited by this paper
Electrophysiological Consequences of Cardiac Fibrosis
· Sander Verheule · 2021 · 103 citations · Cited by this paper
Dynamics of Atrial Fibrillation Mechanisms and Comorbidities
· Jordi Heijman · 2020 · 100 citations · Cited by this paper
The effect of vagally induced dispersion of action potential duration on atrial arrhythmogenesis
· Edward J. Vigmond · 2004 · 79 citations · Cited by this paper
Myofibroblast modulation of cardiac myocyte structure and function
· Chandan K. Nagaraju · 2019 · 60 citations · Cited by this paper
Atrial fibrosis and substrate based characterization in atrial fibrillation: Time to move forwards
· Jing Xian Quah · 2021 · 30 citations · Cited by this paper
Rotor mechanism and its mapping in atrial fibrillation
· Changhao Xu · 2023 · 25 citations · Cited by this paper
Modulation of Spiral-Wave Dynamics and Spontaneous Activity in a Fibroblast/Myocyte Heterocellular Tissue–-A Computational Study
· Ariel Greisas · 2012 · 23 citations · Cited by this paper
Multi-scale approaches for the simulation of cardiac electrophysiology: II – Tissue-level structure and function
· Alan P. Benson · 2020 · 22 citations · Cited by this paper
Complex-order fractional diffusion in reaction-diffusion systems
· Alfonso Bueno‐Orovio · 2023 · 18 citations · Cited by this paper
Electrophysiology in the Developing World
· Michael Bestawros · 2016 · 14 citations · Cited by this paper
Patchy fibrosis promotes trigger–substrate interactions that both generate and maintain atrial fibrillation
· Michael A. Colman · 2023 · 14 citations · Cited by this paper
A COMPLEX ORDER MODEL OF ATRIAL ELECTRICAL PROPAGATION FROM FRACTAL POROUS CELL MEMBRANE
· Juan Pablo Ugarte · 2020 · 13 citations · Cited by this paper
The Effects of Fibrotic Cell Type and Its Density on Atrial Fibrillation Dynamics: An In Silico Study
· Laura C. Palacio · 2021 · 12 citations · Cited by this paper
Spontaneous activation under atrial fibrosis: A model using complex order derivatives
· Juan Pablo Ugarte · 2020 · 10 citations · Cited by this paper
Biophysical Modeling of Cardiac Cells: From Ion Channels to Tissue
· Sergio Alonso · 2025 · 10 citations · Cited by this paper
Minimal Functional Clusters Predict the Probability of Reentry in Cardiac Fibrotic Tissue
· Farhad Pashakhanloo · 2021 · 8 citations · Cited by this paper
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