Literature DB >> 27957220

Mapping Atrial Fibrillation: 2015 Update.

Chirag R Barbhayia1, Saurabh Kumar1, Gregory F Michaud1.   

Abstract

Atrial fibrillation requires a trigger that initiates the arrhythmia and substrate that favors perpetuation. Cardiac mapping is necessary to locate triggers and substrate so that an ablation strategy can be optimized. The most commonly used cardiac mapping approach is isochronal or activation mapping, which aims to create a spatial model of electrical wavefront propagation. Historically, activation mapping has been successful for mapping point source and single or double wave reentrant arrhythmias, while mapping multiple wavelets or driving sources that underlie most episodes of atrial fibrillation remains challenging. In the multiple wavelet model of AF there is no particular area critical to sustain atrial fibrillation, and a "critical mass" of atrium is required to maintain AF. Recent studies suggest endocardial and epicardial dissociation may play an important role. Investigation of driving sources that sustain AF has focused on the presence of rotors. Rotors in human AF have now been observed using multiple imaging modalities, however ablation strategies targeting rotors remain of unproven benefit. In addition, substrate mapping of AF is now feasible. Increasing degrees of atrial fibrosis on delayed enhancement magnetic resonance imaging (DE-MRI) has been shown to correlate with poor procedural outcomes for AF ablation, which suggests the increased burden of scar promotes more complex and extensive arrhythmia substrate. Atrial fibrosis is also identifiable using electrogram voltage tagging in an electro-anatomic mapping system. Patient-specific ablation strategies targeting areas of fibrosis are currently under investigation. Recent technological advances have facilitated greater understanding of the potential role for AF mapping and has allowed initiation of clinical studies to evaluate the effectiveness of mapping-based intervention. Multi-modality mapping is likely to play an increasingly important role in AF ablation, but is currently limited by the inability to simultaneously record and interpret electrical signals from both atria and from both the epicardium and endocardium.

Entities:  

Keywords:  Atrial Fibrillation; Catheter Ablation; Mapping

Year:  2015        PMID: 27957220      PMCID: PMC5135179          DOI: 10.4022/jafib.1227

Source DB:  PubMed          Journal:  J Atr Fibrillation        ISSN: 1941-6911


  61 in total

1.  Quantifying activation frequency in atrial fibrillation to establish underlying mechanisms and ablation guidance.

Authors:  Omer Berenfeld
Journal:  Heart Rhythm       Date:  2007-05-13       Impact factor: 6.343

2.  Fibrotic atrial cardiomyopathy: a specific disease/syndrome supplying substrates for atrial fibrillation, atrial tachycardia, sinus node disease, AV node disease, and thromboembolic complications.

Authors:  Hans Kottkamp
Journal:  J Cardiovasc Electrophysiol       Date:  2012-05-03

3.  Atrial fibrillation substrate: the "unknown species"-- from lone atrial fibrillation to fibrotic atrial cardiomyopathy.

Authors:  Hans Kottkamp
Journal:  Heart Rhythm       Date:  2012-01-11       Impact factor: 6.343

4.  Promotion of atrial fibrillation by heart failure in dogs: atrial remodeling of a different sort.

Authors:  D Li; S Fareh; T K Leung; S Nattel
Journal:  Circulation       Date:  1999-07-06       Impact factor: 29.690

5.  Electropathological substrate of longstanding persistent atrial fibrillation in patients with structural heart disease: epicardial breakthrough.

Authors:  Natasja M S de Groot; Richard P M Houben; Joep L Smeets; Eric Boersma; Ulrich Schotten; Martin J Schalij; Harry Crijns; Maurits A Allessie
Journal:  Circulation       Date:  2010-10-11       Impact factor: 29.690

6.  Noninvasive panoramic mapping of human atrial fibrillation mechanisms: a feasibility report.

Authors:  Michel Haissaguerre; Meleze Hocini; Ashok J Shah; Nicolas Derval; Frederic Sacher; Pierre Jais; Remi Dubois
Journal:  J Cardiovasc Electrophysiol       Date:  2013-02-01

7.  Spatiotemporal periodicity during atrial fibrillation in the isolated sheep heart.

Authors:  A C Skanes; R Mandapati; O Berenfeld; J M Davidenko; J Jalife
Journal:  Circulation       Date:  1998-09-22       Impact factor: 29.690

8.  Real-time dominant frequency mapping and ablation of dominant frequency sites in atrial fibrillation with left-to-right frequency gradients predicts long-term maintenance of sinus rhythm.

Authors:  Felipe Atienza; Jesús Almendral; José Jalife; Sharon Zlochiver; Robert Ploutz-Snyder; Esteban G Torrecilla; Angel Arenal; Jérôme Kalifa; Francisco Fernández-Avilés; Omer Berenfeld
Journal:  Heart Rhythm       Date:  2008-10-22       Impact factor: 6.343

9.  Bipolar electrogram shannon entropy at sites of rotational activation: implications for ablation of atrial fibrillation.

Authors:  Anand N Ganesan; Pawel Kuklik; Dennis H Lau; Anthony G Brooks; Mathias Baumert; Wei Wen Lim; Shivshankar Thanigaimani; Sachin Nayyar; Rajiv Mahajan; Jonathan M Kalman; Kurt C Roberts-Thomson; Prashanthan Sanders
Journal:  Circ Arrhythm Electrophysiol       Date:  2012-12-23

10.  Transmural conduction is the predominant mechanism of breakthrough during atrial fibrillation: evidence from simultaneous endo-epicardial high-density activation mapping.

Authors:  Jens Eckstein; Stef Zeemering; Dominik Linz; Bart Maesen; Sander Verheule; Arne van Hunnik; Harry Crijns; Maurits A Allessie; Ulrich Schotten
Journal:  Circ Arrhythm Electrophysiol       Date:  2013-03-19
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  4 in total

1.  Intrinsically stretchable electrode array enabled in vivo electrophysiological mapping of atrial fibrillation at cellular resolution.

Authors:  Jia Liu; Xinyuan Zhang; Yuxin Liu; Miguel Rodrigo; Patrick D Loftus; Joy Aparicio-Valenzuela; Jukuan Zheng; Terrence Pong; Kevin J Cyr; Meghedi Babakhanian; Jasmine Hasi; Jinxing Li; Yuanwen Jiang; Christopher J Kenney; Paul J Wang; Anson M Lee; Zhenan Bao
Journal:  Proc Natl Acad Sci U S A       Date:  2020-06-15       Impact factor: 11.205

Review 2.  Decrement Evoked Potential Mapping to Guide Ventricular Tachycardia Ablation: Elucidating the Functional Substrate.

Authors:  Abhishek Bhaskaran; John Fitzgerald; Nicholas Jackson; Sigfus Gizurarson; Kumaraswamy Nanthakumar; Andreu Porta-Sánchez
Journal:  Arrhythm Electrophysiol Rev       Date:  2020-12

3.  Similarity Score for the Identification of Active Sites in Patients With Atrial Fibrillation.

Authors:  Vasanth Ravikumar; Sanket Thakare; Xiangzhen Kong; Henri Roukoz; Elena G Tolkacheva
Journal:  Front Physiol       Date:  2022-01-20       Impact factor: 4.566

Review 4.  Analytical approaches for myocardial fibrillation signals.

Authors:  Balvinder S Handa; Caroline H Roney; Charles Houston; Norman A Qureshi; Xinyang Li; David S Pitcher; Rasheda A Chowdhury; Phang Boon Lim; Emmanuel Dupont; Steven A Niederer; Chris D Cantwell; Nicholas S Peters; Fu Siong Ng
Journal:  Comput Biol Med       Date:  2018-07-17       Impact factor: 4.589

  4 in total

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