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Direct Estimation of Equivalent Bioelectric Sources Based on Huygens’ Principle

An estimation of the electric sources in the heart was conducted using a novel method, based on Huygens’ Principle, aiming at a direct estimation of equivalent bioelectric sources over the heart’s surface in real time. The main scope of this work was to establish a new, fast approach to the solution...

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Autores principales: Theodosiadou, Georgia, Arnaoutoglou, Dimitrios G., Nannis, Ioannis, Katsimentes, Sotirios, Sirakoulis, Georgios Ch., Kyriacou, George A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10525174/
https://www.ncbi.nlm.nih.gov/pubmed/37760165
http://dx.doi.org/10.3390/bioengineering10091063
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author Theodosiadou, Georgia
Arnaoutoglou, Dimitrios G.
Nannis, Ioannis
Katsimentes, Sotirios
Sirakoulis, Georgios Ch.
Kyriacou, George A.
author_facet Theodosiadou, Georgia
Arnaoutoglou, Dimitrios G.
Nannis, Ioannis
Katsimentes, Sotirios
Sirakoulis, Georgios Ch.
Kyriacou, George A.
author_sort Theodosiadou, Georgia
collection PubMed
description An estimation of the electric sources in the heart was conducted using a novel method, based on Huygens’ Principle, aiming at a direct estimation of equivalent bioelectric sources over the heart’s surface in real time. The main scope of this work was to establish a new, fast approach to the solution of the inverse electrocardiography problem. The study was based on recorded electrocardiograms (ECGs). Based on Huygens’ Principle, measurements obtained from the surfaceof a patient’s thorax were interpolated over the surface of the employed volume conductor model and considered as secondary Huygens’ sources. These sources, being non-zero only over the surface under study, were employed to determine the weighting factors of the eigenfunctions’ expansion, describing the generated voltage distribution over the whole conductor volume. With the availability of the potential distribution stemming from measurements, the electromagnetics reciprocity theorem is applied once again to yield the equivalent sources over the pericardium. The methodology is self-validated, since the surface potentials calculated from these equivalent sources are in very good agreement with ECG measurements. The ultimate aim of this effort is to create a tool providing the equivalent epicardial voltage or current sources in real time, i.e., during the ECG measurements with multiple electrodes.
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spelling pubmed-105251742023-09-28 Direct Estimation of Equivalent Bioelectric Sources Based on Huygens’ Principle Theodosiadou, Georgia Arnaoutoglou, Dimitrios G. Nannis, Ioannis Katsimentes, Sotirios Sirakoulis, Georgios Ch. Kyriacou, George A. Bioengineering (Basel) Article An estimation of the electric sources in the heart was conducted using a novel method, based on Huygens’ Principle, aiming at a direct estimation of equivalent bioelectric sources over the heart’s surface in real time. The main scope of this work was to establish a new, fast approach to the solution of the inverse electrocardiography problem. The study was based on recorded electrocardiograms (ECGs). Based on Huygens’ Principle, measurements obtained from the surfaceof a patient’s thorax were interpolated over the surface of the employed volume conductor model and considered as secondary Huygens’ sources. These sources, being non-zero only over the surface under study, were employed to determine the weighting factors of the eigenfunctions’ expansion, describing the generated voltage distribution over the whole conductor volume. With the availability of the potential distribution stemming from measurements, the electromagnetics reciprocity theorem is applied once again to yield the equivalent sources over the pericardium. The methodology is self-validated, since the surface potentials calculated from these equivalent sources are in very good agreement with ECG measurements. The ultimate aim of this effort is to create a tool providing the equivalent epicardial voltage or current sources in real time, i.e., during the ECG measurements with multiple electrodes. MDPI 2023-09-09 /pmc/articles/PMC10525174/ /pubmed/37760165 http://dx.doi.org/10.3390/bioengineering10091063 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Theodosiadou, Georgia
Arnaoutoglou, Dimitrios G.
Nannis, Ioannis
Katsimentes, Sotirios
Sirakoulis, Georgios Ch.
Kyriacou, George A.
Direct Estimation of Equivalent Bioelectric Sources Based on Huygens’ Principle
title Direct Estimation of Equivalent Bioelectric Sources Based on Huygens’ Principle
title_full Direct Estimation of Equivalent Bioelectric Sources Based on Huygens’ Principle
title_fullStr Direct Estimation of Equivalent Bioelectric Sources Based on Huygens’ Principle
title_full_unstemmed Direct Estimation of Equivalent Bioelectric Sources Based on Huygens’ Principle
title_short Direct Estimation of Equivalent Bioelectric Sources Based on Huygens’ Principle
title_sort direct estimation of equivalent bioelectric sources based on huygens’ principle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10525174/
https://www.ncbi.nlm.nih.gov/pubmed/37760165
http://dx.doi.org/10.3390/bioengineering10091063
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