International audienceAtrial fibrillation is the most encountered pathology of the heart rate. The reasons of its occurrence and its particular characteristics remain unknown, resulting from complex phenomena interaction. From these interactions emerges Complex Fractionated Atrial Electrograms (CFAE) which are useful for the ablation procedure. This study presents a method based on nonlinear data analysis, the Recurrence Quantification Analysis (RQA) applied on intracardiac atrial electrograms to detect CFAE particularities. The results obtained on areas previously tagged by a cardilogist show a good sensitivity to CFAE. Combination of RQA features offers a larger discrimination potential for future automated detection
[EN] Aimed at characterizing the atrial substrate in atrial fibrillation (AF), a wide number of inde...
Introduction: Complex fractionated atrial electrograms (CFAEs) might identify the critical substrate...
The sum total of millions of cardiac cell depolarization potentials can be represented using an elec...
International audienceAtrial fibrillation is the most encountered pathology of the heart rate. The r...
International audienceAtrial fibrillation (AF) is the most common cardiac arrhythmia but its proarrh...
Atrial fibrillation (AF) is regarded as a complex arrhythmia, with one or more co-existing mechanism...
[First paragraph] We read with great interest the study by Baher and colleagues.1 Their work helps t...
Spatiotemporal complexity of atrial fibrillation (AF) patterns is often quantified by annotated intr...
Identification of recurrent patterns in complex fractionated atrial electrograms (CFAE) has been use...
This work provides methods to measure and analyze features of atrial electrograms - especially compl...
Abstract Introduction The temporal behavior of atrial electrograms (AEGs) collected during persist...
Background and Objective: Complex fractionated atrial electrograms (CFAE) may contain information co...
This study proposes a novel noninvasive ECG-based approach to accurately quantify differences in the...
In the present work, we investigated current methods for complex fractionated atrial electrogram (CF...
[EN] Aimed at characterizing the atrial substrate in atrial fibrillation (AF), a wide number of inde...
Introduction: Complex fractionated atrial electrograms (CFAEs) might identify the critical substrate...
The sum total of millions of cardiac cell depolarization potentials can be represented using an elec...
International audienceAtrial fibrillation is the most encountered pathology of the heart rate. The r...
International audienceAtrial fibrillation (AF) is the most common cardiac arrhythmia but its proarrh...
Atrial fibrillation (AF) is regarded as a complex arrhythmia, with one or more co-existing mechanism...
[First paragraph] We read with great interest the study by Baher and colleagues.1 Their work helps t...
Spatiotemporal complexity of atrial fibrillation (AF) patterns is often quantified by annotated intr...
Identification of recurrent patterns in complex fractionated atrial electrograms (CFAE) has been use...
This work provides methods to measure and analyze features of atrial electrograms - especially compl...
Abstract Introduction The temporal behavior of atrial electrograms (AEGs) collected during persist...
Background and Objective: Complex fractionated atrial electrograms (CFAE) may contain information co...
This study proposes a novel noninvasive ECG-based approach to accurately quantify differences in the...
In the present work, we investigated current methods for complex fractionated atrial electrogram (CF...
[EN] Aimed at characterizing the atrial substrate in atrial fibrillation (AF), a wide number of inde...
Introduction: Complex fractionated atrial electrograms (CFAEs) might identify the critical substrate...
The sum total of millions of cardiac cell depolarization potentials can be represented using an elec...