Literature DB >> 18955396

Electro-anatomic mapping systems in arrhythmias.

Christian Knackstedt1, Patrick Schauerte, Paulus Kirchhof.   

Abstract

Electroanatomic mapping systems have permitted and facilitated difficult interventional ablation procedures for more than a decade. Initially, their use has been in arrhythmias in which the ablation target is difficult to identify, such as ventricular tachycardias in structural heart disease, atypical atrial flutters, or arrhythmias in patients with complex congenital heart defects. In the recent years, electroanatomic mapping systems have also been used to guide catheter-based isolation of the pulmonary veins, an important component of the modern management of atrial fibrillation (AF). Electroanatomic mapping systems integrate three important functionalities, namely (i) non-fluoroscopic localization of electrophysiological catheters in three-dimensional (3D) space; (ii) analysis and 3D display of activation sequences computed from local or calculated electrograms, and 3D display of electrogram voltage ('scar tissue'); and (iii) integration of this 'electroanatomic' information with non-invasive images of the heart (mainly computed tomography or magnetic resonance images). Although better understanding and ablation of complex arrhythmias mostly relies on the 3D integration of catheter localization and electrogram-based information to illustrate re-entrant circuits or areas of focal initiation of arrhythmias, the use of electroanatomic mapping systems in AF is currently based on integration of anatomic images of the left atrium and non-fluoroscopic visualization of the ablation catheter. Their use in the treatment of AF is mainly driven by safety considerations such as shorter fluoroscopy and procedure times, or visualization of cardiac (pulmonary veins) and extra-cardiac (oesophagus) structures that need to be protected during the procedure. In the future, the use of magnetic resonance images, and potentially of high-quality 3D ultrasound images, could provide anatomic information without ionizing radiation and may be helpful to visualize left atrial scar tissue.

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Year:  2008        PMID: 18955396     DOI: 10.1093/europace/eun225

Source DB:  PubMed          Journal:  Europace        ISSN: 1099-5129            Impact factor:   5.214


  22 in total

1.  Reproducibility and Angle Independence of Electromechanical Wave Imaging for the Measurement of Electromechanical Activation during Sinus Rhythm in Healthy Humans.

Authors:  Lea Melki; Alexandre Costet; Elisa E Konofagou
Journal:  Ultrasound Med Biol       Date:  2017-08-01       Impact factor: 2.998

2.  Point-by-point pulmonary vein antrum isolation guided by intracardiac echocardiography and 3D mapping and duty-cycled multipolar AF ablation: effect of multipolar ablation on procedure duration and fluoroscopy time.

Authors:  Yaariv Khaykin; Lauren Zarnett; Daniel Friedlander; Zaev A Wulffhart; Bonnie Whaley; David Giewercer; Bernice Tsang; Atul Verma
Journal:  J Interv Card Electrophysiol       Date:  2012-03-11       Impact factor: 1.900

3.  Relationships between cardiac innervation/perfusion imbalance and ventricular arrhythmias: impact on invasive electrophysiological parameters and ablation procedures.

Authors:  Alessia Gimelli; Francesca Menichetti; Ezio Soldati; Riccardo Liga; Andrea Vannozzi; Paolo Marzullo; Maria Grazia Bongiorni
Journal:  Eur J Nucl Med Mol Imaging       Date:  2016-07-19       Impact factor: 9.236

4.  Esophagus imaging for catheter ablation of atrial fibrillation: comparison of two methods with showing of esophageal movement.

Authors:  Richard Kobza; Andreas W Schoenenberger; Paul Erne
Journal:  J Interv Card Electrophysiol       Date:  2009-09-10       Impact factor: 1.900

5.  CARTO-guided vs. NavX-guided pulmonary vein antrum isolation and pulmonary vein antrum isolation performed without 3-D mapping: effect of the 3-D mapping system on procedure duration and fluoroscopy time.

Authors:  Yaariv Khaykin; Richard Oosthuizen; Lauren Zarnett; Zaev A Wulffhart; Bonnie Whaley; Carol Hill; David Giewercer; Atul Verma
Journal:  J Interv Card Electrophysiol       Date:  2011-01-21       Impact factor: 1.900

6.  4D cardiac electromechanical activation imaging.

Authors:  Julien Grondin; Dafang Wang; Christopher S Grubb; Natalia Trayanova; Elisa E Konofagou
Journal:  Comput Biol Med       Date:  2019-08-06       Impact factor: 4.589

Review 7.  Advanced Mapping Systems To Guide Atrial Fibrillation Ablation: Electrical Information That Matters.

Authors:  Sotirios Nedios; Philipp Sommer; Andreas Bollmann; Gerhard Hindricks
Journal:  J Atr Fibrillation       Date:  2016-04-30

8.  Catheter Ablation Lesion Visualization With Intracardiac Strain Imaging in Canines and Humans.

Authors:  Vincent Sayseng; Julien Grondin; Vasant A Salgaonkar; Christopher S Grubb; Maryam Basij; Mohammad Mehrmohammadi; Vivek Iyer; Daniel Wang; Hasan Garan; Elaine Y Wan; Elisa E Konofagou
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2020-04-15       Impact factor: 2.725

9.  Reduction of Fluoroscopy Time and Radiation Dosage During Catheter Ablation for Atrial Fibrillation.

Authors:  Kenichiro Yamagata; Bashar Aldhoon; Josef Kautzner
Journal:  Arrhythm Electrophysiol Rev       Date:  2016-08

Review 10.  New Imaging Technologies To Characterize Arrhythmic Substrate.

Authors:  Antonio Dello Russo; Sergio Conti; Ghaliah Al-Mohani; Michela Casella; Francesca Pizzamiglio; Corrado Carbucicchio; Stefania Riva; Gaetano Fassini; Massimo Moltrasio; Fabrizio Tundo; Martina Zucchetti; Benedetta Majocchi; Eleonora Russo; Vittoria Marino; Fabrizio Bologna; Luigi Di Biase; Andrea Natale; Claudio Tondo
Journal:  J Atr Fibrillation       Date:  2014-12-31
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