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dc.contributor.authorJacquemet, Vincent
dc.date.accessioned2024-04-09T17:26:33Z
dc.date.availableNO_RESTRICTIONfr
dc.date.available2024-04-09T17:26:33Z
dc.date.issued2017
dc.identifier.urihttp://hdl.handle.net/1866/32907
dc.publisherElsevierfr
dc.rightsCC BY-NC-ND 4.0 DEED : Attribution - Pas d’Utilisation Commerciale - Pas de Modification 4.0 International
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/deed.fr
dc.subjectElectrocardiogramfr
dc.subjectP wavefr
dc.subjectAtrial electrophysiologyfr
dc.subjectEquivalent dipolefr
dc.subjectGabor-Nelson theoremfr
dc.subjectBoundary element methodfr
dc.titleEquivalent dipole sources to estimate the influence of extracellular myocardial anisotropy in thin-walled cardiac forward modelsfr
dc.typeArticlefr
dc.contributor.affiliationUniversité de Montréal. Faculté de médecine. Département de pharmacologie et physiologiefr
dc.identifier.doi10.1016/j.mbs.2017.01.008
dcterms.abstractThe extracellular domain of the heart is anisotropic, which affects volume conduction and therefore body surface potentials. This paper tests the hypothesis that when wall thickness is sufficiently small (such as in the atria), the effect of extracellular anisotropy can be estimated by modifying local dipole current sources. A formula based on the Gabor–Nelson equivalent dipole and on the reciprocity theorem is derived to compute a linear transformation of the dipole sources that approximates in an isotropic volume conductor the far-field of the actual sources in an anisotropic volume conductor. It involves solving three Poisson equation (once for all). The results obtained in an atrial model embedded in a boundary-element torso model suggest that when wall thickness is < 3 mm, simulated P waves are weakly altered by extracellular anisotropy during sinus rhythm: an anisotropy ratio of 4:1 typically reduced the longitudinal component of the dipole sources by < 3%, increased the transverse component by < 5%, and increased the transmural component by ≈ 25% (which may be relevant in case of epicardial-endocardial dissociation). Due to uncertainty on experimental conductivity values, it is proposed that atrial extracellular anisotropy may be neglected when computing P waves.fr
dcterms.isPartOfurn:ISSN:0025-5564fr
dcterms.isPartOfurn:ISSN:1879-3134fr
dcterms.languageengfr
UdeM.ReferenceFournieParDeposanthttps://doi.org/10.1016/j.mbs.2017.01.008fr
UdeM.VersionRioxxVersion acceptée / Accepted Manuscriptfr
oaire.citationTitleMathematical biosciencesfr
oaire.citationVolume286fr
oaire.citationStartPage31fr
oaire.citationEndPage38fr


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CC BY-NC-ND 4.0 DEED : Attribution - Pas d’Utilisation Commerciale - Pas de Modification 4.0 International
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