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dc.creatorDuarte-Salazar C.A.spa
dc.creatorOrozco-Duque A.spa
dc.creatorTobón C.spa
dc.creatorPeluffo-Ordóñez D.H.spa
dc.creatorLuna J.A.G.spa
dc.creatorBecerra M.A.spa
dc.date.accessioned2017-12-19T19:36:44Z
dc.date.available2017-12-19T19:36:44Z
dc.date.created2017
dc.identifier.isbn9781509051052
dc.identifier.urihttp://hdl.handle.net/11407/4278
dc.description.abstractThe atrial fibrillation (AF) is the most common arrhythmia, which generates the highest costs on clinical systems. Theory of the rotor is one of the most recent approaches to explain the mechanisms that maintain AF. The most promising treatment is the ablation, whose success depends on rotor tip location. In a previous research, the approximate entropy (ApEn) calculated on simulated electrograms from atrial models has shown high capability for detecting the rotor tip, however it needed a human final adjustment. In addition, this technique involves a high computational cost, which is a problem for its effective application. In this study, multiple features maps were generated and different combinations of them were conducted using wavelet image fusion. The rotor tip location when using image fusion, was similar to the results achieved with the methodology based on ApEn, however, our methodology did not require any manual adjustment, and the computational cost was reduced to 85%. This study includes a comparative analysis between unipolar and bipolar electrograms obtained from a simulated 2D model of a human atrial tissue under chronic AF. © 2016 IEEE.eng
dc.language.isoeng
dc.publisherInstitute of Electrical and Electronics Engineers Inc.spa
dc.relation.isversionofhttp://ieeexplore.ieee.org/document/7885712/?reload=truespa
dc.sourceScopusspa
dc.titleComparison between unipolar and bipolar electrograms for detecting rotor tip from 2D fibrillation model using image fusion. A simulation studyspa
dc.typeConference Papereng
dc.rights.accessrightsinfo:eu-repo/semantics/restrictedAccess
dc.contributor.affiliationDuarte-Salazar, C.A., GEA Research Group, Institución Universitaria Salazar y Herrera, Medellín, Colombiaspa
dc.contributor.affiliationOrozco-Duque, A., GI2B Research Group, Instituto Tecnológico Metropolitano, Medellín, Colombiaspa
dc.contributor.affiliationTobón, C., Nanostructured Materials Research Group, Universidad de Medellín, Medellín, Colombiaspa
dc.contributor.affiliationPeluffo-Ordóñez, D.H., Facultad de Ingeniería en Ciencias Aplicadas-FICA, Universidad Técnica Del Norte, Ecuador, Department of Electronics from Universidad de Nariño, Colombiaspa
dc.contributor.affiliationLuna, J.A.G., SINTELWEB Research Group, Universidad Nacional de Colombia, Medellín, Colombiaspa
dc.contributor.affiliationBecerra, M.A., GEA Research Group, Institución Universitaria Salazar y Herrera, Medellín, Colombiaspa
dc.identifier.doi10.1109/LA-CCI.2016.7885712
dc.subject.keywordAtrial Fibrillationeng
dc.subject.keywordElectrogramseng
dc.subject.keywordImage Fusioneng
dc.subject.keywordRotor Tipeng
dc.subject.keywordArtificial intelligenceeng
dc.subject.keywordComputation theoryeng
dc.subject.keywordCostseng
dc.subject.keywordDiseaseseng
dc.subject.keywordApproximate entropyeng
dc.subject.keywordAtrial fibrillationeng
dc.subject.keywordBipolar electrogramseng
dc.subject.keywordComparative analysiseng
dc.subject.keywordComputational costseng
dc.subject.keywordElectrogramseng
dc.subject.keywordRotor tipeng
dc.subject.keywordSimulation studieseng
dc.subject.keywordImage fusioneng
dc.publisher.facultyFacultad de Ciencias Básicasspa
dc.abstractThe atrial fibrillation (AF) is the most common arrhythmia, which generates the highest costs on clinical systems. Theory of the rotor is one of the most recent approaches to explain the mechanisms that maintain AF. The most promising treatment is the ablation, whose success depends on rotor tip location. In a previous research, the approximate entropy (ApEn) calculated on simulated electrograms from atrial models has shown high capability for detecting the rotor tip, however it needed a human final adjustment. In addition, this technique involves a high computational cost, which is a problem for its effective application. In this study, multiple features maps were generated and different combinations of them were conducted using wavelet image fusion. The rotor tip location when using image fusion, was similar to the results achieved with the methodology based on ApEn, however, our methodology did not require any manual adjustment, and the computational cost was reduced to 85%. This study includes a comparative analysis between unipolar and bipolar electrograms obtained from a simulated 2D model of a human atrial tissue under chronic AF. © 2016 IEEE.eng
dc.creator.affiliationGEA Research Group, Institución Universitaria Salazar y Herrera, Medellín, Colombiaspa
dc.creator.affiliationGI2B Research Group, Instituto Tecnológico Metropolitano, Medellín, Colombiaspa
dc.creator.affiliationNanostructured Materials Research Group, Universidad de Medellín, Medellín, Colombiaspa
dc.creator.affiliationFacultad de Ingeniería en Ciencias Aplicadas-FICA, Universidad Técnica Del Norte, Ecuadorspa
dc.creator.affiliationDepartment of Electronics from Universidad de Nariño, Colombiaspa
dc.creator.affiliationSINTELWEB Research Group, Universidad Nacional de Colombia, Medellín, Colombiaspa
dc.relation.ispartofes2016 IEEE Latin American Conference on Computational Intelligence, LA-CCI 2016 - Proceedingsspa
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dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.type.driverinfo:eu-repo/semantics/conferenceObject
dc.identifier.reponamereponame:Repositorio Institucional Universidad de Medellínspa
dc.identifier.instnameinstname:Universidad de Medellínspa


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