Cargando…

Omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping

AIMS : Bipolar electrogram (Bi(EGM))-based substrate maps are heavily influenced by direction of a wavefront to the mapping bipole. In this study, we evaluate high-resolution, orientation-independent peak-to-peak voltage (Vpp) maps obtained with an equi-spaced electrode array and omnipolar EGMs (OT(...

Descripción completa

Detalles Bibliográficos
Autores principales: Porta-Sánchez, Andreu, Magtibay, Karl, Nayyar, Sachin, Bhaskaran, Abhishek, Lai, Patrick F H, Massé, Stéphane, Labos, Christopher, Qiang, Beiping, Romagnuolo, Rocco, Masoudpour, Hassan, Biswas, Labonny, Ghugre, Nilesh, Laflamme, Michael, Deno, Don Curtis, Nanthakumar, Kumaraswamy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6479413/
https://www.ncbi.nlm.nih.gov/pubmed/30726937
http://dx.doi.org/10.1093/europace/euy304
_version_ 1783413339944124416
author Porta-Sánchez, Andreu
Magtibay, Karl
Nayyar, Sachin
Bhaskaran, Abhishek
Lai, Patrick F H
Massé, Stéphane
Labos, Christopher
Qiang, Beiping
Romagnuolo, Rocco
Masoudpour, Hassan
Biswas, Labonny
Ghugre, Nilesh
Laflamme, Michael
Deno, Don Curtis
Nanthakumar, Kumaraswamy
author_facet Porta-Sánchez, Andreu
Magtibay, Karl
Nayyar, Sachin
Bhaskaran, Abhishek
Lai, Patrick F H
Massé, Stéphane
Labos, Christopher
Qiang, Beiping
Romagnuolo, Rocco
Masoudpour, Hassan
Biswas, Labonny
Ghugre, Nilesh
Laflamme, Michael
Deno, Don Curtis
Nanthakumar, Kumaraswamy
author_sort Porta-Sánchez, Andreu
collection PubMed
description AIMS : Bipolar electrogram (Bi(EGM))-based substrate maps are heavily influenced by direction of a wavefront to the mapping bipole. In this study, we evaluate high-resolution, orientation-independent peak-to-peak voltage (Vpp) maps obtained with an equi-spaced electrode array and omnipolar EGMs (OT(EGMs)), measure its beat-to-beat consistency, and assess its ability to delineate diseased areas within the myocardium compared against traditional Bi(EGMs) on two orientations: along (AL) and across (AC) array splines. METHODS AND RESULTS: The endocardium of the left ventricle of 10 pigs (three healthy and seven infarcted) were each mapped using an Advisor™ HD grid with a research EnSite Precision™ system. Cardiac magnetic resonance images with late gadolinium enhancement were registered with electroanatomical maps and were used for gross scar delineation. Over healthy areas, OT(EGM) Vpp values are larger than AL bipoles by 27% and AC bipoles by 26%, and over infarcted areas OT(EGM) Vpp values are 23% larger than AL bipoles and 27% larger than AC bipoles (P < 0.05). Omnipolar EGM voltage maps were 37% denser than Bi(EGM) maps. In addition, OT(EGM) Vpp values are more consistent than bipolar Vpps showing less beat-by-beat variation than Bi(EGM) by 39% and 47% over both infarcted and healthy areas, respectively (P < 0.01). Omnipolar EGM better delineate infarcted areas than traditional Bi(EGMs) from both orientations. CONCLUSION: An equi-spaced electrode grid when combined with omnipolar methodology yielded the largest detectable bipolar-like voltage and is void of directional influences, providing reliable voltage assessment within infarcted and non-infarcted regions of the heart.
format Online
Article
Text
id pubmed-6479413
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-64794132019-05-01 Omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping Porta-Sánchez, Andreu Magtibay, Karl Nayyar, Sachin Bhaskaran, Abhishek Lai, Patrick F H Massé, Stéphane Labos, Christopher Qiang, Beiping Romagnuolo, Rocco Masoudpour, Hassan Biswas, Labonny Ghugre, Nilesh Laflamme, Michael Deno, Don Curtis Nanthakumar, Kumaraswamy Europace Basic Science AIMS : Bipolar electrogram (Bi(EGM))-based substrate maps are heavily influenced by direction of a wavefront to the mapping bipole. In this study, we evaluate high-resolution, orientation-independent peak-to-peak voltage (Vpp) maps obtained with an equi-spaced electrode array and omnipolar EGMs (OT(EGMs)), measure its beat-to-beat consistency, and assess its ability to delineate diseased areas within the myocardium compared against traditional Bi(EGMs) on two orientations: along (AL) and across (AC) array splines. METHODS AND RESULTS: The endocardium of the left ventricle of 10 pigs (three healthy and seven infarcted) were each mapped using an Advisor™ HD grid with a research EnSite Precision™ system. Cardiac magnetic resonance images with late gadolinium enhancement were registered with electroanatomical maps and were used for gross scar delineation. Over healthy areas, OT(EGM) Vpp values are larger than AL bipoles by 27% and AC bipoles by 26%, and over infarcted areas OT(EGM) Vpp values are 23% larger than AL bipoles and 27% larger than AC bipoles (P < 0.05). Omnipolar EGM voltage maps were 37% denser than Bi(EGM) maps. In addition, OT(EGM) Vpp values are more consistent than bipolar Vpps showing less beat-by-beat variation than Bi(EGM) by 39% and 47% over both infarcted and healthy areas, respectively (P < 0.01). Omnipolar EGM better delineate infarcted areas than traditional Bi(EGMs) from both orientations. CONCLUSION: An equi-spaced electrode grid when combined with omnipolar methodology yielded the largest detectable bipolar-like voltage and is void of directional influences, providing reliable voltage assessment within infarcted and non-infarcted regions of the heart. Oxford University Press 2019-05 2019-02-04 /pmc/articles/PMC6479413/ /pubmed/30726937 http://dx.doi.org/10.1093/europace/euy304 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of the European Society of Cardiology http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Basic Science
Porta-Sánchez, Andreu
Magtibay, Karl
Nayyar, Sachin
Bhaskaran, Abhishek
Lai, Patrick F H
Massé, Stéphane
Labos, Christopher
Qiang, Beiping
Romagnuolo, Rocco
Masoudpour, Hassan
Biswas, Labonny
Ghugre, Nilesh
Laflamme, Michael
Deno, Don Curtis
Nanthakumar, Kumaraswamy
Omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping
title Omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping
title_full Omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping
title_fullStr Omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping
title_full_unstemmed Omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping
title_short Omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping
title_sort omnipolarity applied to equi-spaced electrode array for ventricular tachycardia substrate mapping
topic Basic Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6479413/
https://www.ncbi.nlm.nih.gov/pubmed/30726937
http://dx.doi.org/10.1093/europace/euy304
work_keys_str_mv AT portasanchezandreu omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT magtibaykarl omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT nayyarsachin omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT bhaskaranabhishek omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT laipatrickfh omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT massestephane omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT laboschristopher omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT qiangbeiping omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT romagnuolorocco omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT masoudpourhassan omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT biswaslabonny omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT ghugrenilesh omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT laflammemichael omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT denodoncurtis omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping
AT nanthakumarkumaraswamy omnipolarityappliedtoequispacedelectrodearrayforventriculartachycardiasubstratemapping