52 Genetic Loci Influencing Myocardial Mass

Background Myocardial mass is a key determinant of cardiac muscle function and hypertrophy. Myocardial depolarization leading to cardiac muscle contraction is reflected by the amplitude and duration of the QRS complex on the electrocardiogram (ECG). Abnormal QRS amplitude or duration reflect changes...

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Tipo de recurso:
Fecha de publicación:
2016
Institución:
Universidad del Rosario
Repositorio:
Repositorio EdocUR - U. Rosario
Idioma:
eng
OAI Identifier:
oai:repository.urosario.edu.co:10336/22473
Acceso en línea:
https://doi.org/10.1016/j.jacc.2016.07.729
https://repository.urosario.edu.co/handle/10336/22473
Palabra clave:
Sodium channel Nav1.5
Sodium channel Nav1.8
Transcription factor
Article
Biological functions
Cardiac muscle
Cardiovascular parameters
Chromatin
Drosophila melanogaster
European
Functional assessment
Gene identification
Gene locus
Genetic association
Genetic parameters
Genetic trait
Genetic variability
Genome-wide association study
Heart
Heart ventricle hypertrophy
Histone modification
Human
Human genome
In vitro study
In vivo study
Major clinical study
Meta analysis (topic)
Mus musculus
Myocardial mass
Phenotype
Priority journal
Protein binding
QRS complex
Reliability
SCN10A gene
SCN5A gene
Validation study
Animal
Cardiomegaly
Genetics
Genome-wide association study
Animals
Cardiomegaly
Genetic Loci
Genome-Wide Association Study
Humans
Electrocardiogram
Genetic association study
Heart failure
Left ventricular hypertrophy
QRS
Rights
License
Abierto (Texto Completo)
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network_acronym_str EDOCUR2
network_name_str Repositorio EdocUR - U. Rosario
repository_id_str
dc.title.spa.fl_str_mv 52 Genetic Loci Influencing Myocardial Mass
title 52 Genetic Loci Influencing Myocardial Mass
spellingShingle 52 Genetic Loci Influencing Myocardial Mass
Silljé, Herman H.W.
Sodium channel Nav1.5
Sodium channel Nav1.8
Transcription factor
Article
Biological functions
Cardiac muscle
Cardiovascular parameters
Chromatin
Drosophila melanogaster
European
Functional assessment
Gene identification
Gene locus
Genetic association
Genetic parameters
Genetic trait
Genetic variability
Genome-wide association study
Heart
Heart ventricle hypertrophy
Histone modification
Human
Human genome
In vitro study
In vivo study
Major clinical study
Meta analysis (topic)
Mus musculus
Myocardial mass
Phenotype
Priority journal
Protein binding
QRS complex
Reliability
SCN10A gene
SCN5A gene
Validation study
Animal
Cardiomegaly
Genetics
Genome-wide association study
Animals
Cardiomegaly
Genetic Loci
Genome-Wide Association Study
Humans
Electrocardiogram
Genetic association study
Heart failure
Left ventricular hypertrophy
QRS
title_short 52 Genetic Loci Influencing Myocardial Mass
title_full 52 Genetic Loci Influencing Myocardial Mass
title_fullStr 52 Genetic Loci Influencing Myocardial Mass
title_full_unstemmed 52 Genetic Loci Influencing Myocardial Mass
title_sort 52 Genetic Loci Influencing Myocardial Mass
dc.creator.spa.fl_str_mv Silljé, Herman H.W.
Sinagra, Gianfranco
Sinner, Moritz F.
Slowikowski, Kamil
Soliman, Elsayed Z.
Spector, Timothy D.
Spiering, Wilko
Stamatoyannopoulos, John A.
Stolk, Ronald P.
Strauch, Konstantin
Tan, Sian-Tsung
Tarasov, Kirill V.
Trinh, Bosco
Uitterlinden, Andre G.
van den Boogaard, Malou
van Duijn, Cornelia M.
van Gilst, Wiek H.
Viikari, Jorma S.
Visscher, Peter M.
Vitart, Veronique
Völker, Uwe
Waldenberger, Melanie
Weichenberger, Christian X.
Westra, Harm-Jan
Wijmenga, Cisca
Wolffenbuttel, Bruce H.
Yang, Jian
Bezzina, Connie R.
Munroe, Patricia B.
Snieder, Harold
Wright, Alan F.
Rudan, Igor
Boyer, Laurie A.
Asselbergs, Folkert W.
van Veldhuisen, Dirk J.
Stricker, Bruno H.
Psaty, Bruce M.
Ciullo, Marina
Sanna, Serena
Lehtimäki, Terho
Wilson, James F.
Bandinelli, Stefania
Alonso, Alvaro
Gasparini, Paolo
Jukema, J. Wouter
Kääb, Stefan
Gudnason, Vilmundur
Felix, Stephan B.
Heckbert, Susan R.
de Boer, Rudolf A.
Newton-Cheh, Christopher
Hicks, Andrew A.
Chambers, John C.
Jamshidi, Yalda
Visel, Axel
Christoffels, Vincent M.
Isaacs, Aaron
Samani, Nilesh J.
de Bakker, Paul I.W.
author Silljé, Herman H.W.
author_facet Silljé, Herman H.W.
Sinagra, Gianfranco
Sinner, Moritz F.
Slowikowski, Kamil
Soliman, Elsayed Z.
Spector, Timothy D.
Spiering, Wilko
Stamatoyannopoulos, John A.
Stolk, Ronald P.
Strauch, Konstantin
Tan, Sian-Tsung
Tarasov, Kirill V.
Trinh, Bosco
Uitterlinden, Andre G.
van den Boogaard, Malou
van Duijn, Cornelia M.
van Gilst, Wiek H.
Viikari, Jorma S.
Visscher, Peter M.
Vitart, Veronique
Völker, Uwe
Waldenberger, Melanie
Weichenberger, Christian X.
Westra, Harm-Jan
Wijmenga, Cisca
Wolffenbuttel, Bruce H.
Yang, Jian
Bezzina, Connie R.
Munroe, Patricia B.
Snieder, Harold
Wright, Alan F.
Rudan, Igor
Boyer, Laurie A.
Asselbergs, Folkert W.
van Veldhuisen, Dirk J.
Stricker, Bruno H.
Psaty, Bruce M.
Ciullo, Marina
Sanna, Serena
Lehtimäki, Terho
Wilson, James F.
Bandinelli, Stefania
Alonso, Alvaro
Gasparini, Paolo
Jukema, J. Wouter
Kääb, Stefan
Gudnason, Vilmundur
Felix, Stephan B.
Heckbert, Susan R.
de Boer, Rudolf A.
Newton-Cheh, Christopher
Hicks, Andrew A.
Chambers, John C.
Jamshidi, Yalda
Visel, Axel
Christoffels, Vincent M.
Isaacs, Aaron
Samani, Nilesh J.
de Bakker, Paul I.W.
author_role author
author2 Sinagra, Gianfranco
Sinner, Moritz F.
Slowikowski, Kamil
Soliman, Elsayed Z.
Spector, Timothy D.
Spiering, Wilko
Stamatoyannopoulos, John A.
Stolk, Ronald P.
Strauch, Konstantin
Tan, Sian-Tsung
Tarasov, Kirill V.
Trinh, Bosco
Uitterlinden, Andre G.
van den Boogaard, Malou
van Duijn, Cornelia M.
van Gilst, Wiek H.
Viikari, Jorma S.
Visscher, Peter M.
Vitart, Veronique
Völker, Uwe
Waldenberger, Melanie
Weichenberger, Christian X.
Westra, Harm-Jan
Wijmenga, Cisca
Wolffenbuttel, Bruce H.
Yang, Jian
Bezzina, Connie R.
Munroe, Patricia B.
Snieder, Harold
Wright, Alan F.
Rudan, Igor
Boyer, Laurie A.
Asselbergs, Folkert W.
van Veldhuisen, Dirk J.
Stricker, Bruno H.
Psaty, Bruce M.
Ciullo, Marina
Sanna, Serena
Lehtimäki, Terho
Wilson, James F.
Bandinelli, Stefania
Alonso, Alvaro
Gasparini, Paolo
Jukema, J. Wouter
Kääb, Stefan
Gudnason, Vilmundur
Felix, Stephan B.
Heckbert, Susan R.
de Boer, Rudolf A.
Newton-Cheh, Christopher
Hicks, Andrew A.
Chambers, John C.
Jamshidi, Yalda
Visel, Axel
Christoffels, Vincent M.
Isaacs, Aaron
Samani, Nilesh J.
de Bakker, Paul I.W.
author2_role author
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author
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author
author
author
author
author
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author
author
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author
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author
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author
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author
author
author
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author
author
author
author
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dc.subject.keyword.spa.fl_str_mv Sodium channel Nav1.5
Sodium channel Nav1.8
Transcription factor
Article
Biological functions
Cardiac muscle
Cardiovascular parameters
Chromatin
Drosophila melanogaster
European
Functional assessment
Gene identification
Gene locus
Genetic association
Genetic parameters
Genetic trait
Genetic variability
Genome-wide association study
Heart
Heart ventricle hypertrophy
Histone modification
Human
Human genome
In vitro study
In vivo study
Major clinical study
Meta analysis (topic)
Mus musculus
Myocardial mass
Phenotype
Priority journal
Protein binding
QRS complex
Reliability
SCN10A gene
SCN5A gene
Validation study
Animal
Cardiomegaly
Genetics
Genome-wide association study
Animals
Cardiomegaly
Genetic Loci
Genome-Wide Association Study
Humans
Electrocardiogram
Genetic association study
Heart failure
Left ventricular hypertrophy
QRS
topic Sodium channel Nav1.5
Sodium channel Nav1.8
Transcription factor
Article
Biological functions
Cardiac muscle
Cardiovascular parameters
Chromatin
Drosophila melanogaster
European
Functional assessment
Gene identification
Gene locus
Genetic association
Genetic parameters
Genetic trait
Genetic variability
Genome-wide association study
Heart
Heart ventricle hypertrophy
Histone modification
Human
Human genome
In vitro study
In vivo study
Major clinical study
Meta analysis (topic)
Mus musculus
Myocardial mass
Phenotype
Priority journal
Protein binding
QRS complex
Reliability
SCN10A gene
SCN5A gene
Validation study
Animal
Cardiomegaly
Genetics
Genome-wide association study
Animals
Cardiomegaly
Genetic Loci
Genome-Wide Association Study
Humans
Electrocardiogram
Genetic association study
Heart failure
Left ventricular hypertrophy
QRS
description Background Myocardial mass is a key determinant of cardiac muscle function and hypertrophy. Myocardial depolarization leading to cardiac muscle contraction is reflected by the amplitude and duration of the QRS complex on the electrocardiogram (ECG). Abnormal QRS amplitude or duration reflect changes in myocardial mass and conduction, and are associated with increased risk of heart failure and death. Objectives This meta-analysis sought to gain insights into the genetic determinants of myocardial mass. Methods We carried out a genome-wide association meta-analysis of 4 QRS traits in up to 73,518 individuals of European ancestry, followed by extensive biological and functional assessment. Results We identified 52 genomic loci, of which 32 are novel, that are reliably associated with 1 or more QRS phenotypes at p  and lt; 1 × 10?8. These loci are enriched in regions of open chromatin, histone modifications, and transcription factor binding, suggesting that they represent regions of the genome that are actively transcribed in the human heart. Pathway analyses provided evidence that these loci play a role in cardiac hypertrophy. We further highlighted 67 candidate genes at the identified loci that are preferentially expressed in cardiac tissue and associated with cardiac abnormalities in Drosophila melanogaster and Mus musculus. We validated the regulatory function of a novel variant in the SCN5A/SCN10A locus in vitro and in vivo. Conclusions Taken together, our findings provide new insights into genes and biological pathways controlling myocardial mass and may help identify novel therapeutic targets. © 2016 American College of Cardiology Foundation
publishDate 2016
dc.date.created.spa.fl_str_mv 2016
dc.date.accessioned.none.fl_str_mv 2020-05-25T23:56:38Z
dc.date.available.none.fl_str_mv 2020-05-25T23:56:38Z
dc.type.eng.fl_str_mv article
dc.type.coarversion.fl_str_mv http://purl.org/coar/version/c_970fb48d4fbd8a85
dc.type.coar.fl_str_mv http://purl.org/coar/resource_type/c_6501
dc.type.spa.spa.fl_str_mv Artículo
dc.identifier.doi.none.fl_str_mv https://doi.org/10.1016/j.jacc.2016.07.729
dc.identifier.issn.none.fl_str_mv 7351097
dc.identifier.uri.none.fl_str_mv https://repository.urosario.edu.co/handle/10336/22473
url https://doi.org/10.1016/j.jacc.2016.07.729
https://repository.urosario.edu.co/handle/10336/22473
identifier_str_mv 7351097
dc.language.iso.spa.fl_str_mv eng
language eng
dc.relation.citationEndPage.none.fl_str_mv 1448
dc.relation.citationIssue.none.fl_str_mv No. 13
dc.relation.citationStartPage.none.fl_str_mv 1435
dc.relation.citationTitle.none.fl_str_mv Journal of the American College of Cardiology
dc.relation.citationVolume.none.fl_str_mv Vol. 68
dc.relation.ispartof.spa.fl_str_mv Journal of the American College of Cardiology, ISSN:7351097, Vol.68, No.13 (2016); pp. 1435-1448
dc.relation.uri.spa.fl_str_mv https://www.scopus.com/inward/record.uri?eid=2-s2.0-84990929556&doi=10.1016%2fj.jacc.2016.07.729&partnerID=40&md5=0511f855741ba4e9e70d03da7b3e1622
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dc.publisher.spa.fl_str_mv Elsevier USA
institution Universidad del Rosario
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dc.source.reponame.spa.fl_str_mv reponame:Repositorio Institucional EdocUR
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S.620aeaee-4009-4d50-9351-fce79fe45430-1Visscher, Peter M.40e71628-88e2-4624-94bc-676fa2df0b97-1Vitart, Veroniqueae29badd-310b-4420-99c9-7e0b48d4ed4f-1Völker, Uwe21c485ff-1b6a-4541-9b4d-d487c8f03d2c-1Waldenberger, Melaniec7aa9022-d4fa-4151-894d-9c32b607ed88-1Weichenberger, Christian X.bf9075ad-97bc-4a5c-9564-93d99d9e1762-1Westra, Harm-Janb2d89f2c-2bd6-425a-b660-7d535aba13f9-1Wijmenga, Cisca6e39bb88-1f7b-4063-b37a-ed6d3f6d8fe8-1Wolffenbuttel, Bruce H.44eb9efc-f8cd-499a-9316-e6675744674c-1Yang, Jian2c163cfd-decb-4035-b92f-9142e7b128e5-1Bezzina, Connie R.d7a9e530-2b04-41b6-b661-b4e94c5f7fbe-1Munroe, Patricia B.719a0e55-dfbe-40bc-ac8f-d3d788c1d50a-1Snieder, Haroldc954c7c4-3527-45f4-b592-853100019255-1Wright, Alan F.c600a2f4-5154-410d-be61-e5c4df661cd1-1Rudan, Igor46eaa189-4b47-4208-b4f0-9f09536b844e-1Boyer, Laurie A.2de67765-bf14-4fb6-b328-2dbe9762d80f-1Asselbergs, Folkert W.7a6601a7-c839-423a-a711-453133e0abbe-1van Veldhuisen, Dirk J.ad72d791-2900-4976-a2a7-39f20b3e2c26-1Stricker, Bruno H.a99d6cf2-1da8-48e2-9e93-c3d2e6242f5d-1Psaty, Bruce M.6af29e96-f6da-438f-a5de-3008df20548e-1Ciullo, Marina7853dafa-b566-4062-b527-e82b529857dc-1Sanna, Serenafb306aa5-f4ad-437d-9120-cd18337518a0-1Lehtimäki, Terhoa6ba0a29-22f2-46ac-9fe4-431378d1635d-1Wilson, James F.3e1d8399-f575-4eb2-99a5-efe7ec8d7ae1-1Bandinelli, Stefania2a8c859d-8721-41be-aee7-893f250ff8df-1Alonso, Alvarob36b9958-95a1-4b2e-8a1b-e40a805b3aa5-1Gasparini, Paolo640f8931-7967-411c-a8cb-54ece1fdc3ae-1Jukema, J. Wouter3eed8533-9017-446a-ae86-947faca0b377-1Kääb, Stefana9ccb84b-48aa-441a-a447-f3bbfd643679-1Gudnason, Vilmundurb20b3e1b-a28b-4a3e-9aa4-1755a2be9d0b-1Felix, Stephan B.690dfaea-226c-4249-9df1-72d08b2bba35-1Heckbert, Susan R.6766f054-b538-4034-911c-4cbd1ea4a017-1de Boer, Rudolf A.423ef415-e0c2-4b51-988d-b6d41db7b103-1Newton-Cheh, Christopheraf626555-480e-4bff-a865-304fe919e277-1Hicks, Andrew A.c4556d1d-0c13-4063-9bfd-c119ce3c1d27-1Chambers, John C.6a09114b-70c5-47a3-bfd5-00c5573cfaad-1Jamshidi, Yalda6a950da1-4ecd-4d69-a021-85170ff4c2f2-1Visel, Axel75b1bc3e-16a5-40c1-b8fd-2955f5524122-1Christoffels, Vincent M.38b3f237-6102-4a04-8420-d1b8959c5fd9-1Isaacs, Aarona973d5a7-cb60-4a89-8167-f2811c5918b3-1Samani, Nilesh J.7f9fa68f-d56b-4720-831c-1eeb3e0c1884-1de Bakker, Paul I.W.e46c3313-1afa-410c-bd0d-0f256292581e-12020-05-25T23:56:38Z2020-05-25T23:56:38Z2016Background Myocardial mass is a key determinant of cardiac muscle function and hypertrophy. Myocardial depolarization leading to cardiac muscle contraction is reflected by the amplitude and duration of the QRS complex on the electrocardiogram (ECG). Abnormal QRS amplitude or duration reflect changes in myocardial mass and conduction, and are associated with increased risk of heart failure and death. Objectives This meta-analysis sought to gain insights into the genetic determinants of myocardial mass. Methods We carried out a genome-wide association meta-analysis of 4 QRS traits in up to 73,518 individuals of European ancestry, followed by extensive biological and functional assessment. Results We identified 52 genomic loci, of which 32 are novel, that are reliably associated with 1 or more QRS phenotypes at p  and lt; 1 × 10?8. These loci are enriched in regions of open chromatin, histone modifications, and transcription factor binding, suggesting that they represent regions of the genome that are actively transcribed in the human heart. Pathway analyses provided evidence that these loci play a role in cardiac hypertrophy. We further highlighted 67 candidate genes at the identified loci that are preferentially expressed in cardiac tissue and associated with cardiac abnormalities in Drosophila melanogaster and Mus musculus. We validated the regulatory function of a novel variant in the SCN5A/SCN10A locus in vitro and in vivo. Conclusions Taken together, our findings provide new insights into genes and biological pathways controlling myocardial mass and may help identify novel therapeutic targets. © 2016 American College of Cardiology Foundationapplication/pdfhttps://doi.org/10.1016/j.jacc.2016.07.7297351097https://repository.urosario.edu.co/handle/10336/22473engElsevier USA1448No. 131435Journal of the American College of CardiologyVol. 68Journal of the American College of Cardiology, ISSN:7351097, Vol.68, No.13 (2016); pp. 1435-1448https://www.scopus.com/inward/record.uri?eid=2-s2.0-84990929556&doi=10.1016%2fj.jacc.2016.07.729&partnerID=40&md5=0511f855741ba4e9e70d03da7b3e1622Abierto (Texto Completo)http://purl.org/coar/access_right/c_abf2instname:Universidad del Rosarioreponame:Repositorio Institucional EdocURSodium channel Nav1.5Sodium channel Nav1.8Transcription factorArticleBiological functionsCardiac muscleCardiovascular parametersChromatinDrosophila melanogasterEuropeanFunctional assessmentGene identificationGene locusGenetic associationGenetic parametersGenetic traitGenetic variabilityGenome-wide association studyHeartHeart ventricle hypertrophyHistone modificationHumanHuman genomeIn vitro studyIn vivo studyMajor clinical studyMeta analysis (topic)Mus musculusMyocardial massPhenotypePriority journalProtein bindingQRS complexReliabilitySCN10A geneSCN5A geneValidation studyAnimalCardiomegalyGeneticsGenome-wide association studyAnimalsCardiomegalyGenetic LociGenome-Wide Association StudyHumansElectrocardiogramGenetic association studyHeart failureLeft ventricular hypertrophyQRS52 Genetic Loci Influencing Myocardial MassarticleArtículohttp://purl.org/coar/version/c_970fb48d4fbd8a85http://purl.org/coar/resource_type/c_6501van der Harst, Pimvan Setten, JessicaVerweij, NiekVogler, GeorgFranke, LudeMaurano, Matthew T.Wang, XinchenLeach, Irene MateoEijgelsheim, MarkSotoodehnia, NonaHayward, CarolineSorice, RossellaMeirelles, OsorioLyytikäinen, Leo-PekkaPolašek, OzrenTanaka, ToshikoArking, Dan E.Ulivi, SheilaTrompet, StellaMüller-Nurasyid, MartinaSmith, Albert V.Dörr, MarcusKerr, Kathleen F.Magnani, Jared W.Del Greco M., FabiolaZhang, WeihuaNolte, Ilja M.Silva, Claudia T.Padmanabhan, SandoshTragante, ViniciusEsko, TõnuAbecasis, Gonçalo R.Adriaens, Michiel E.Andersen, KarlBarnett, PhilBis, Joshua C.Bodmer, RolfBuckley, Brendan M.Campbell, HarryCannon, Megan V.Chakravarti, AravindaChen, Lin Y.Delitala, AlessandroDevereux, Richard B.Doevendans, Pieter A.Dominiczak, Anna F.Ferrucci, LuigiFord, IanGieger, ChristianHarris, Tamara B.Haugen, EricHeinig, MatthiasHernandez, Dena G.Hillege, Hans L.Hirschhorn, Joel N.Hofman, AlbertHubner, NorbertHwang, Shih-JenIorio, AnnamariaKähönen, MikaKellis, ManolisKolcic, IvanaKooner, Ishminder K.Kooner, Jaspal S.Kors, Jan A.Lakatta, Edward G.Lage, KasperLauner, Lenore J.Levy, DanielLundby, AliciaMacfarlane, Peter W.May, DalitMeitinger, ThomasMetspalu, AndresNappo, StefaniaNaitza, SilviaNeph, ShaneNord, Alex S.Nutile, TeresaOkin, Peter M.Olsen, Jesper V.Oostra, Ben A.Penninger, Josef M.Pennacchio, Len A.Pers, Tune H.Perz, SiegfriedPeters, AnnettePinto, Yigal M.Pfeufer, ArnePilia, Maria GraziaPramstaller, Peter P.Prins, Bram P.Raitakari, Olli T.Raychaudhuri, SoumyaRice, Ken M.Rossin, Elizabeth J.Rotter, Jerome I.Schafer, SebastianSchlessinger, DavidSchmidt, Carsten O.Sehmi, JobanpreetORIGINAL1-s2-0-S0735109716346642-main.pdfapplication/pdf4293743https://repository.urosario.edu.co/bitstreams/f745742e-c58e-443d-b3bf-97478a5bded9/download225952857427d118f91d90005d20d9a8MD51TEXT1-s2-0-S0735109716346642-main.pdf.txt1-s2-0-S0735109716346642-main.pdf.txtExtracted texttext/plain65419https://repository.urosario.edu.co/bitstreams/9e1bf4a8-b623-4ab7-92fd-46cd87b575dd/download6d65fa30311761ff6f123de63a249dbcMD52THUMBNAIL1-s2-0-S0735109716346642-main.pdf.jpg1-s2-0-S0735109716346642-main.pdf.jpgGenerated Thumbnailimage/jpeg4587https://repository.urosario.edu.co/bitstreams/d22ecdc2-7c3a-49ee-b97d-9fd6789fa135/download731b47659d8795632a25aee06f1b587eMD5310336/22473oai:repository.urosario.edu.co:10336/224732022-05-02 07:37:14.192463https://repository.urosario.edu.coRepositorio institucional EdocURedocur@urosario.edu.co