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Simultaneous Epicardial and Noncontact Endocardial Mapping of the Canine Right Atrium: Simulation and Experiment

Epicardial high-density electrical mapping is a well-established experimental instrument to monitor in vivo the activity of the atria in response to modulations of the autonomic nervous system in sinus rhythm. In regions that are not accessible by epicardial mapping, noncontact endocardial mapping p...

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Autores principales: Sabouri, Sepideh, Matene, Elhacene, Vinet, Alain, Richer, Louis-Philippe, Cardinal, René, Armour, J. Andrew, Pagé, Pierre, Kus, Teresa, Jacquemet, Vincent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3945013/
https://www.ncbi.nlm.nih.gov/pubmed/24598778
http://dx.doi.org/10.1371/journal.pone.0091165
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author Sabouri, Sepideh
Matene, Elhacene
Vinet, Alain
Richer, Louis-Philippe
Cardinal, René
Armour, J. Andrew
Pagé, Pierre
Kus, Teresa
Jacquemet, Vincent
author_facet Sabouri, Sepideh
Matene, Elhacene
Vinet, Alain
Richer, Louis-Philippe
Cardinal, René
Armour, J. Andrew
Pagé, Pierre
Kus, Teresa
Jacquemet, Vincent
author_sort Sabouri, Sepideh
collection PubMed
description Epicardial high-density electrical mapping is a well-established experimental instrument to monitor in vivo the activity of the atria in response to modulations of the autonomic nervous system in sinus rhythm. In regions that are not accessible by epicardial mapping, noncontact endocardial mapping performed through a balloon catheter may provide a more comprehensive description of atrial activity. We developed a computer model of the canine right atrium to compare epicardial and noncontact endocardial mapping. The model was derived from an experiment in which electroanatomical reconstruction, epicardial mapping (103 electrodes), noncontact endocardial mapping (2048 virtual electrodes computed from a 64-channel balloon catheter), and direct-contact endocardial catheter recordings were simultaneously performed in a dog. The recording system was simulated in the computer model. For simulations and experiments (after atrio-ventricular node suppression), activation maps were computed during sinus rhythm. Repolarization was assessed by measuring the area under the atrial T wave (ATa), a marker of repolarization gradients. Results showed an epicardial-endocardial correlation coefficients of 0.80 and 0.63 (two dog experiments) and 0.96 (simulation) between activation times, and a correlation coefficients of 0.57 and 0.46 (two dog experiments) and 0.92 (simulation) between ATa values. Despite distance (balloon-atrial wall) and dimension reduction (64 electrodes), some information about atrial repolarization remained present in noncontact signals.
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spelling pubmed-39450132014-03-10 Simultaneous Epicardial and Noncontact Endocardial Mapping of the Canine Right Atrium: Simulation and Experiment Sabouri, Sepideh Matene, Elhacene Vinet, Alain Richer, Louis-Philippe Cardinal, René Armour, J. Andrew Pagé, Pierre Kus, Teresa Jacquemet, Vincent PLoS One Research Article Epicardial high-density electrical mapping is a well-established experimental instrument to monitor in vivo the activity of the atria in response to modulations of the autonomic nervous system in sinus rhythm. In regions that are not accessible by epicardial mapping, noncontact endocardial mapping performed through a balloon catheter may provide a more comprehensive description of atrial activity. We developed a computer model of the canine right atrium to compare epicardial and noncontact endocardial mapping. The model was derived from an experiment in which electroanatomical reconstruction, epicardial mapping (103 electrodes), noncontact endocardial mapping (2048 virtual electrodes computed from a 64-channel balloon catheter), and direct-contact endocardial catheter recordings were simultaneously performed in a dog. The recording system was simulated in the computer model. For simulations and experiments (after atrio-ventricular node suppression), activation maps were computed during sinus rhythm. Repolarization was assessed by measuring the area under the atrial T wave (ATa), a marker of repolarization gradients. Results showed an epicardial-endocardial correlation coefficients of 0.80 and 0.63 (two dog experiments) and 0.96 (simulation) between activation times, and a correlation coefficients of 0.57 and 0.46 (two dog experiments) and 0.92 (simulation) between ATa values. Despite distance (balloon-atrial wall) and dimension reduction (64 electrodes), some information about atrial repolarization remained present in noncontact signals. Public Library of Science 2014-03-05 /pmc/articles/PMC3945013/ /pubmed/24598778 http://dx.doi.org/10.1371/journal.pone.0091165 Text en © 2014 Sabouri et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sabouri, Sepideh
Matene, Elhacene
Vinet, Alain
Richer, Louis-Philippe
Cardinal, René
Armour, J. Andrew
Pagé, Pierre
Kus, Teresa
Jacquemet, Vincent
Simultaneous Epicardial and Noncontact Endocardial Mapping of the Canine Right Atrium: Simulation and Experiment
title Simultaneous Epicardial and Noncontact Endocardial Mapping of the Canine Right Atrium: Simulation and Experiment
title_full Simultaneous Epicardial and Noncontact Endocardial Mapping of the Canine Right Atrium: Simulation and Experiment
title_fullStr Simultaneous Epicardial and Noncontact Endocardial Mapping of the Canine Right Atrium: Simulation and Experiment
title_full_unstemmed Simultaneous Epicardial and Noncontact Endocardial Mapping of the Canine Right Atrium: Simulation and Experiment
title_short Simultaneous Epicardial and Noncontact Endocardial Mapping of the Canine Right Atrium: Simulation and Experiment
title_sort simultaneous epicardial and noncontact endocardial mapping of the canine right atrium: simulation and experiment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3945013/
https://www.ncbi.nlm.nih.gov/pubmed/24598778
http://dx.doi.org/10.1371/journal.pone.0091165
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