A Simplified 3D Model of Whole Heart Electrical Activity and 12-Lead ECG Generation

We present a computationally efficient three-dimensional bidomain model of torso-embedded whole heart electrical activity, with spontaneous initiation of activation in the sinoatrial node, incorporating a specialized conduction system with heterogeneous action potential morphologies throughout the h...

Full description

Bibliographic Details
Main Authors: Siniša Sovilj, Ratko Magjarević, Nigel H. Lovell, Socrates Dokos
Format: Article
Language:English
Published: Hindawi Limited 2013-01-01
Series:Computational and Mathematical Methods in Medicine
Online Access:http://dx.doi.org/10.1155/2013/134208
id doaj-405934bea9fa40a1b263ba0be3697ec0
record_format Article
spelling doaj-405934bea9fa40a1b263ba0be3697ec02020-11-24T23:24:09ZengHindawi LimitedComputational and Mathematical Methods in Medicine1748-670X1748-67182013-01-01201310.1155/2013/134208134208A Simplified 3D Model of Whole Heart Electrical Activity and 12-Lead ECG GenerationSiniša Sovilj0Ratko Magjarević1Nigel H. Lovell2Socrates Dokos3University of Zagreb, Faculty of Electrical Engineering and Computing, 10000 Zagreb, CroatiaUniversity of Zagreb, Faculty of Electrical Engineering and Computing, 10000 Zagreb, CroatiaGraduate School of Biomedical Engineering, University of New South Wales, Sydney, NSW 2052, AustraliaGraduate School of Biomedical Engineering, University of New South Wales, Sydney, NSW 2052, AustraliaWe present a computationally efficient three-dimensional bidomain model of torso-embedded whole heart electrical activity, with spontaneous initiation of activation in the sinoatrial node, incorporating a specialized conduction system with heterogeneous action potential morphologies throughout the heart. The simplified geometry incorporates the whole heart as a volume source, with heart cavities, lungs, and torso as passive volume conductors. We placed four surface electrodes at the limbs of the torso: , , and and six electrodes on the chest to simulate the Einthoven, Goldberger-augmented and precordial leads of a standard 12-lead system. By placing additional seven electrodes at the appropriate torso positions, we were also able to calculate the vectorcardiogram of the Frank lead system. Themodel was able to simulate realistic electrocardiogram (ECG) morphologies for the 12 standard leads, orthogonal , , and leads, as well as the vectorcardiogram under normal and pathological heart states. Thus, simplified and easy replicable 3D cardiac bidomain model offers a compromise between computational load and model complexity and can be used as an investigative tool to adjust cell, tissue, and whole heart properties, such as setting ischemic lesions or regions of myocardial infarction, to readily investigate their effects on whole ECG morphology.http://dx.doi.org/10.1155/2013/134208
collection DOAJ
language English
format Article
sources DOAJ
author Siniša Sovilj
Ratko Magjarević
Nigel H. Lovell
Socrates Dokos
spellingShingle Siniša Sovilj
Ratko Magjarević
Nigel H. Lovell
Socrates Dokos
A Simplified 3D Model of Whole Heart Electrical Activity and 12-Lead ECG Generation
Computational and Mathematical Methods in Medicine
author_facet Siniša Sovilj
Ratko Magjarević
Nigel H. Lovell
Socrates Dokos
author_sort Siniša Sovilj
title A Simplified 3D Model of Whole Heart Electrical Activity and 12-Lead ECG Generation
title_short A Simplified 3D Model of Whole Heart Electrical Activity and 12-Lead ECG Generation
title_full A Simplified 3D Model of Whole Heart Electrical Activity and 12-Lead ECG Generation
title_fullStr A Simplified 3D Model of Whole Heart Electrical Activity and 12-Lead ECG Generation
title_full_unstemmed A Simplified 3D Model of Whole Heart Electrical Activity and 12-Lead ECG Generation
title_sort simplified 3d model of whole heart electrical activity and 12-lead ecg generation
publisher Hindawi Limited
series Computational and Mathematical Methods in Medicine
issn 1748-670X
1748-6718
publishDate 2013-01-01
description We present a computationally efficient three-dimensional bidomain model of torso-embedded whole heart electrical activity, with spontaneous initiation of activation in the sinoatrial node, incorporating a specialized conduction system with heterogeneous action potential morphologies throughout the heart. The simplified geometry incorporates the whole heart as a volume source, with heart cavities, lungs, and torso as passive volume conductors. We placed four surface electrodes at the limbs of the torso: , , and and six electrodes on the chest to simulate the Einthoven, Goldberger-augmented and precordial leads of a standard 12-lead system. By placing additional seven electrodes at the appropriate torso positions, we were also able to calculate the vectorcardiogram of the Frank lead system. Themodel was able to simulate realistic electrocardiogram (ECG) morphologies for the 12 standard leads, orthogonal , , and leads, as well as the vectorcardiogram under normal and pathological heart states. Thus, simplified and easy replicable 3D cardiac bidomain model offers a compromise between computational load and model complexity and can be used as an investigative tool to adjust cell, tissue, and whole heart properties, such as setting ischemic lesions or regions of myocardial infarction, to readily investigate their effects on whole ECG morphology.
url http://dx.doi.org/10.1155/2013/134208
work_keys_str_mv AT sinisasovilj asimplified3dmodelofwholeheartelectricalactivityand12leadecggeneration
AT ratkomagjarevic asimplified3dmodelofwholeheartelectricalactivityand12leadecggeneration
AT nigelhlovell asimplified3dmodelofwholeheartelectricalactivityand12leadecggeneration
AT socratesdokos asimplified3dmodelofwholeheartelectricalactivityand12leadecggeneration
AT sinisasovilj simplified3dmodelofwholeheartelectricalactivityand12leadecggeneration
AT ratkomagjarevic simplified3dmodelofwholeheartelectricalactivityand12leadecggeneration
AT nigelhlovell simplified3dmodelofwholeheartelectricalactivityand12leadecggeneration
AT socratesdokos simplified3dmodelofwholeheartelectricalactivityand12leadecggeneration
_version_ 1725561535073353728