Literature DB >> 12578877

Characterization of left atrial activation in the intact human heart.

Vias Markides1, Richard J Schilling, Siew Yen Ho, Anthony W C Chow, D Wyn Davies, Nicholas S Peters.   

Abstract

BACKGROUND: The patterns of activation of the human left atrium (LA), how they relate to atrial myocardial architecture, and their role in arrhythmogenesis remain largely unknown. METHODS AND
RESULTS: Left atrial endocardial activation was mapped in 19 patients with a percutaneous noncontact mapping system. Earliest endocardial breakthrough during sinus rhythm (SR) occurred more frequently in the septal (63%, principally posteroseptal) than anterosuperior (37%) LA and varied little with isoproterenol or high right atrial pacing rate. Regardless of site of breakthrough, LA activation was characterized in all patients by propagation around a variably complete line of functional conduction block, descending on the posterior wall from the roof, passing between the ostia of the superior and then inferior pulmonary veins (PVs) before turning septally, passing below the oval fossa, and merging further anteriorly with the septal mitral annulus. Examination of the myocardial architecture in 10 normal adult postmortem hearts revealed an abrupt change in subendocardial fiber orientation along a line following the same course. During episodes of focal initiation of atrial fibrillation (AF), interaction was observed between wavefronts entering the LA from PVs and this functional line of conduction block that resulted in LA macroreentry or formation of daughter wavefronts.
CONCLUSIONS: The LA endocardium has complex but characteristic patterns of activation during sinus rhythm, pacing, and AF initiation by PV ectopy that are determined largely by the functional properties of atrial musculature. These findings have important implications for both pacing and ablative strategies for the prevention of initiation of AF.

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Year:  2003        PMID: 12578877     DOI: 10.1161/01.cir.0000048140.31785.02

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  69 in total

1.  Structural contributions to fibrillatory rotors in a patient-derived computational model of the atria.

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Review 2.  Computational modeling of the human atrial anatomy and electrophysiology.

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3.  Atrial conduction slows immediately before the onset of human atrial fibrillation: a bi-atrial contact mapping study of transitions to atrial fibrillation.

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6.  Clinical outcome when left atrial posterior wall box isolation is included as a catheter ablation strategy in patients with persistent atrial fibrillation.

Authors:  Louisa O'Neill; Mark Hensey; William Nolan; David Keane
Journal:  J Interv Card Electrophysiol       Date:  2015-06-12       Impact factor: 1.900

7.  Changes in Global and Regional Mechanics Due to Atrial Fibrillation: Insights from a Coupled Finite-Element and Circulation Model.

Authors:  Christian B Moyer; Patrick T Norton; John D Ferguson; Jeffrey W Holmes
Journal:  Ann Biomed Eng       Date:  2015-01-29       Impact factor: 3.934

8.  Simulation of biatrial conduction via different pathways during sinus rhythm with a detailed human atrial model.

Authors:  Dong-dong Deng; Ying-lan Gong; Guo-fa Shou; Pei-feng Jiao; Heng-gui Zhang; Xue-song Ye; Ling Xia
Journal:  J Zhejiang Univ Sci B       Date:  2012-09       Impact factor: 3.066

9.  Atrial septopulmonary bundle of the posterior left atrium provides a substrate for atrial fibrillation initiation in a model of vagally mediated pulmonary vein tachycardia of the structurally normal heart.

Authors:  Matthew Klos; David Calvo; Masatoshi Yamazaki; Sharon Zlochiver; Sergey Mironov; José-Angel Cabrera; Damian Sanchez-Quintana; José Jalife; Omer Berenfeld; Jérôme Kalifa
Journal:  Circ Arrhythm Electrophysiol       Date:  2008-08

10.  Interatrial right-to-left conduction in patients with paroxysmal atrial fibrillation.

Authors:  Jari M Tapanainen; Raija Jurkko; Fredrik Holmqvist; Daniela Husser; Ole Kongstad; Markku Mäkijärvi; Lauri Toivonen; Pyotr G Platonov
Journal:  J Interv Card Electrophysiol       Date:  2009-03-13       Impact factor: 1.900

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