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A computational analysis of atrial fibrillation effects on coronary perfusion across the different myocardial layers
by
De Ferrari, Gaetano Maria
, Fois, Matteo
, Scarsoglio, Stefania
, Anselmino, Matteo
, Ridolfi, Luca
, Saglietto, Andrea
in
639/705
/ 692/4019
/ Arrhythmia
/ Atrial Fibrillation - physiopathology
/ Blood flow
/ Cardiac arrhythmia
/ Cardiovascular system
/ Cardiovascular System - physiopathology
/ Computer applications
/ Coronary artery
/ Coronary Circulation
/ Coronary vessels
/ Coronary Vessels - physiopathology
/ Fibrillation
/ Fluid dynamics
/ Frequency analysis
/ Heart diseases
/ Heart Ventricles - physiopathology
/ Hemodynamics
/ Humanities and Social Sciences
/ Humans
/ Hydrodynamics
/ Ischemia
/ Mathematical models
/ Microcirculation
/ Microvasculature
/ Microvessels - physiopathology
/ Models, Theoretical
/ multidisciplinary
/ Perfusion
/ Science
/ Science (multidisciplinary)
/ Veins & arteries
/ Ventricle
2022
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A computational analysis of atrial fibrillation effects on coronary perfusion across the different myocardial layers
by
De Ferrari, Gaetano Maria
, Fois, Matteo
, Scarsoglio, Stefania
, Anselmino, Matteo
, Ridolfi, Luca
, Saglietto, Andrea
in
639/705
/ 692/4019
/ Arrhythmia
/ Atrial Fibrillation - physiopathology
/ Blood flow
/ Cardiac arrhythmia
/ Cardiovascular system
/ Cardiovascular System - physiopathology
/ Computer applications
/ Coronary artery
/ Coronary Circulation
/ Coronary vessels
/ Coronary Vessels - physiopathology
/ Fibrillation
/ Fluid dynamics
/ Frequency analysis
/ Heart diseases
/ Heart Ventricles - physiopathology
/ Hemodynamics
/ Humanities and Social Sciences
/ Humans
/ Hydrodynamics
/ Ischemia
/ Mathematical models
/ Microcirculation
/ Microvasculature
/ Microvessels - physiopathology
/ Models, Theoretical
/ multidisciplinary
/ Perfusion
/ Science
/ Science (multidisciplinary)
/ Veins & arteries
/ Ventricle
2022
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A computational analysis of atrial fibrillation effects on coronary perfusion across the different myocardial layers
by
De Ferrari, Gaetano Maria
, Fois, Matteo
, Scarsoglio, Stefania
, Anselmino, Matteo
, Ridolfi, Luca
, Saglietto, Andrea
in
639/705
/ 692/4019
/ Arrhythmia
/ Atrial Fibrillation - physiopathology
/ Blood flow
/ Cardiac arrhythmia
/ Cardiovascular system
/ Cardiovascular System - physiopathology
/ Computer applications
/ Coronary artery
/ Coronary Circulation
/ Coronary vessels
/ Coronary Vessels - physiopathology
/ Fibrillation
/ Fluid dynamics
/ Frequency analysis
/ Heart diseases
/ Heart Ventricles - physiopathology
/ Hemodynamics
/ Humanities and Social Sciences
/ Humans
/ Hydrodynamics
/ Ischemia
/ Mathematical models
/ Microcirculation
/ Microvasculature
/ Microvessels - physiopathology
/ Models, Theoretical
/ multidisciplinary
/ Perfusion
/ Science
/ Science (multidisciplinary)
/ Veins & arteries
/ Ventricle
2022
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A computational analysis of atrial fibrillation effects on coronary perfusion across the different myocardial layers
Journal Article
A computational analysis of atrial fibrillation effects on coronary perfusion across the different myocardial layers
2022
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Overview
Patients with atrial fibrillation (AF) may present ischemic chest pain in the absence of classical obstructive coronary disease. Among the possible causes, the direct hemodynamic effect exerted by the irregular arrhythmia has not been studied in detail. We performed a computational fluid dynamics analysis by means of a 1D-0D multiscale model of the entire human cardiovascular system, enriched by a detailed mathematical modeling of the coronary arteries and their downstream distal microcirculatory districts (subepicardial, midwall and subendocardial layers). Three mean ventricular rates were simulated (75, 100, 125 bpm) in both sinus rhythm (SR) and atrial fibrillation, and an inter-layer and inter-frequency analysis was conducted focusing on the ratio between mean beat-to-beat blood flow in AF compared to SR. Our results show that AF exerts direct hemodynamic consequences on the coronary microcirculation, causing a reduction in microvascular coronary flow particularly at higher ventricular rates; the most prominent reduction was seen in the subendocardial layers perfused by left coronary arteries (left anterior descending and left circumflex arteries).
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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