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The Journal of physiology, ISSN 0022-3751, 12/2015, Volume 593, Issue 23, pp. 5035 - 5035
Journal Article
Journal Article
Nature reviews cardiology, ISSN 1759-5010, 10/2018, Volume 16, Issue 2, pp. 100 - 111
Journal Article
IEEE transactions on biomedical engineering, ISSN 1558-2531, 04/2017, Volume 64, Issue 4, pp. 735 - 742
Objective: Computational models represent a novel framework for understanding the mechanisms behind atrial fibrillation (AF) and offer a pathway for... 
Electric potential | Protocols | Computational modeling | Biological system modeling | catheter measurements | effective refractory periods | Atrial fibrillation (AF) | electrograms | Catheters | model personalization | Electrodes | computational model | conduction velocity | restitution curves | Numerical models | Catheter measurements | Electrograms | Effective refractory periods | Model personalization | Computational model | Conduction velocity | Restitution curves | Engineering | Technology | Engineering, Biomedical | Science & Technology | Reproducibility of Results | Atrial Function | Models, Cardiovascular | Humans | Atrial Fibrillation - physiopathology | Endocardium - physiopathology | Algorithms | Heart Conduction System - physiopathology | Computer Simulation | Sensitivity and Specificity | Diagnosis, Computer-Assisted - methods | Atrial Fibrillation - diagnosis | Electrophysiologic Techniques, Cardiac - methods | Body Surface Potential Mapping - methods | Electrophysiology | Usage | Computer-generated environments | Research | Computer simulation | Biological systems | Conduction | Atrium | Personalizing | Parameter estimation | Medical instruments | Two dimensional models | Parameter identification | Parameterization | Tissues | Velocity | Errors | Refractory materials | Properties (attributes) | Fibrillation | Refractory period | Computer applications | Measurement methods | Sheet modelling | Mathematical models | Dimensional stability | Atria | Index Medicus
Journal Article