Literature DB >> 15031120

Direction-dependent conduction abnormalities in a canine model of atrial fibrillation due to chronic atrial dilatation.

Sander Verheule1, Emily Wilson, Smriti Banthia, Thomas H Everett, Sujata Shanbhag, Haris J Sih, Jeffrey Olgin.   

Abstract

Chronic rapid atrial pacing (RAP) leads to changes that perpetuate atrial fibrillation (AF). Chronic atrial dilatation due to mitral regurgitation (MR) also increases AF inducibility, but it is not clear whether the underlying mechanism is similar. Therefore, we have investigated atrial electrophysiology in a canine MR model (mitral valve avulsion, 1 mo) using high-resolution optical mapping and compared it with control dogs and with the canine RAP model (6-8 wk of atrial pacing at 600 beats/min, atrioventricular block, and ventricular pacing at 100 beats/min). At followup, optical action potentials were recorded using a 16 x 16 photodiode array from 2 x 2-cm left atrial (LA) and right atrial (RA) areas in perfused preparations, with pacing electrodes around the field of view to study direction dependency of conduction. Action potential duration at 80% repolarization (APD(80)) was not different between control and MR but was reduced in RAP atria. Conduction velocities during normal pacing were not different between groups. However, the MR LA showed increased conduction heterogeneity during pacing at short cycle lengths and during premature extrastimuli, which frequently caused pronounced regional conduction slowing. Conduction in the MR LA during extrastimulation also displayed a marked dependence on propagation direction. These phenomena were not observed in the MR RA and in control and RAP atria. Thus both models form distinctly different AF substrates; in RAP dogs, the decrease in APD(80) may stabilize reentry. In MR dogs, regional LA conduction slowing and increased directional dependency, allowing unidirectional conduction block and preferential paths of conduction, may account for increased AF inducibility.

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Year:  2004        PMID: 15031120     DOI: 10.1152/ajpheart.00014.2004

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  17 in total

1.  Regional left atrial voltage in patients with atrial fibrillation.

Authors:  Gregory M Marcus; Yanfei Yang; Paul D Varosy; Karen Ordovas; Zian H Tseng; Nitish Badhwar; Byron K Lee; Randall J Lee; Melvin M Scheinman; Jeffrey E Olgin
Journal:  Heart Rhythm       Date:  2006-10-20       Impact factor: 6.343

2.  Structural atrial remodeling alters the substrate and spatiotemporal organization of atrial fibrillation: a comparison in canine models of structural and electrical atrial remodeling.

Authors:  Thomas H Everett; Emily E Wilson; Sander Verheule; Jose M Guerra; Scott Foreman; Jeffrey E Olgin
Journal:  Am J Physiol Heart Circ Physiol       Date:  2006-07-28       Impact factor: 4.733

Review 3.  Towards a Mechanistic Understanding and Treatment of a Progressive Disease: Atrial Fibrillation.

Authors:  Felix Yang; Joseph Tiano; Suneet Mittal; Mintu Turakhia; Israel Jacobowitz; Yisachar Greenberg
Journal:  J Atr Fibrillation       Date:  2017-10-31

4.  Pirfenidone prevents the development of a vulnerable substrate for atrial fibrillation in a canine model of heart failure.

Authors:  Ken W Lee; Thomas H Everett; Dulkon Rahmutula; Jose M Guerra; Emily Wilson; Chunhua Ding; Jeffrey E Olgin
Journal:  Circulation       Date:  2006-10-09       Impact factor: 29.690

5.  Electrophysiological differences between the epicardium and the endocardium of the left atrium.

Authors:  Yoav Michowitz; Shiro Nakahara; Tara Bourke; Eric Buch; Marmar Vaseghi; Carlos De Diego; Isaac Wiener; Aman Mahajan; Kalyanam Shivkumar
Journal:  Pacing Clin Electrophysiol       Date:  2010-10-14       Impact factor: 1.976

6.  Molecular basis of selective atrial fibrosis due to overexpression of transforming growth factor-β1.

Authors:  Dolkun Rahmutula; Gregory M Marcus; Emily E Wilson; Chun-Hua Ding; Yuanyuan Xiao; Agnes C Paquet; Rebecca Barbeau; Andrea J Barczak; David J Erle; Jeffrey E Olgin
Journal:  Cardiovasc Res       Date:  2013-04-23       Impact factor: 10.787

7.  Prevention of atrial fibrillation: report from a national heart, lung, and blood institute workshop.

Authors:  Emelia J Benjamin; Peng-Sheng Chen; Diane E Bild; Alice M Mascette; Christine M Albert; Alvaro Alonso; Hugh Calkins; Stuart J Connolly; Anne B Curtis; Dawood Darbar; Patrick T Ellinor; Alan S Go; Nora F Goldschlager; Susan R Heckbert; José Jalife; Charles R Kerr; Daniel Levy; Donald M Lloyd-Jones; Barry M Massie; Stanley Nattel; Jeffrey E Olgin; Douglas L Packer; Sunny S Po; Teresa S M Tsang; David R Van Wagoner; Albert L Waldo; D George Wyse
Journal:  Circulation       Date:  2009-02-03       Impact factor: 29.690

Review 8.  Information learned from animal models of atrial fibrillation.

Authors:  J Emanuel Finet; David S Rosenbaum; J Kevin Donahue
Journal:  Cardiol Clin       Date:  2009-02       Impact factor: 2.213

9.  The hemodynamic and atrial electrophysiologic consequences of chronic left atrial volume overload in a controllable canine model.

Authors:  Chawannuch Ruaengsri; Matthew R Schill; Timothy S Lancaster; Ali J Khiabani; Joshua L Manghelli; Daniel I Carter; Jason W Greenberg; Spencer J Melby; Richard B Schuessler; Ralph J Damiano
Journal:  J Thorac Cardiovasc Surg       Date:  2018-06-05       Impact factor: 5.209

10.  Reduced density and altered regulation of rat atrial L-type Ca2+ current in heart failure.

Authors:  Richard C Bond; Simon M Bryant; Judy J Watson; Jules C Hancox; Clive H Orchard; Andrew F James
Journal:  Am J Physiol Heart Circ Physiol       Date:  2016-12-06       Impact factor: 4.733

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