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SHR Neuro Krebs Kardio Lipid Stoffw Microb

Shah, AJ; Dubois, R; Miyazaki, S; Jadidi, AS; Scherr, D; Wilton, SB; Roten, L; Pascale, P; Pedersen, M; Derval, N; Knecht, S; Sacher, F; Jais, P; Narayan, S; Hocini, M; Haïssaguerre, M.
Pathogenesis of AF: impact on intracardiac signals.
Conf Proc IEEE Eng Med Biol Soc. 2011; 2011(7):5523-5526 Doi: 10.1109/IEMBS.2011.6091409 [OPEN ACCESS]
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Co-Autor*innen der Med Uni Graz
Scherr Daniel
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Abstract:
Atrial fibrillation (AF) is the most common cardiac arrhythmia, and is responsible for the highest number of rhythm-related disorders and cardioembolic strokes worldwide. Intracardiac signal analysis during the onset of paroxysmal AF led to the discovery of pulmonary vein as a triggering source of AF, which has led to the development of pulmonary vein ablation--an established curative therapy for drug-resistant AF. Complex, multicomponent and rapid electrical activity widely involving the atrial substrate characterizes persistent/permanent AF. Widespread nature of the problem and complexity of signals in persistent AF reduce the success rate of ablation therapy. Although signal processing applied to extraction of relevant features from these complex electrograms has helped to improve the efficacy of ablation therapy in persistent/permanent AF, improved understanding of complex signals should help to identify sources of AF and further increase the success rate of ablation therapy.
Find related publications in this database (using NLM MeSH Indexing)
Animals -
Atrial Fibrillation - physiopathology
Heart Conduction System - physiopathology
Humans -
Models, Cardiovascular -
Pulmonary Veins - physiopathology

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