@prefix config: . @prefix meta: . @prefix rdf: . @prefix rdfs: . @prefix xsd: . @prefix owl: . @prefix dc: . @prefix dcmitype: . @prefix dcterms: . @prefix foaf: . @prefix geo: . @prefix om: . @prefix locn: . @prefix schema: . @prefix skos: . @prefix dbpedia: . @prefix p: . @prefix yago: . @prefix units: . @prefix geonames: . @prefix prv: . @prefix prvTypes: . @prefix doap: . @prefix void: . @prefix ir: . @prefix ou: . @prefix teach: . @prefix time: . @prefix datex: . @prefix aiiso: . @prefix vivo: . @prefix bibo: . @prefix fabio: . @prefix vcard: . @prefix swrcfe: . @prefix frapo: . @prefix org: . @prefix ei2a: . @prefix pto: . bibo:doi "10.3389/fphys.2017.00986"; bibo:volume "8"; ou:eid "2-s2.0-85037837788"; ou:urlScopus ; vivo:identifier "2017-4267"; fabio:hasPublicationYear "2017"; dcterms:title "Tailoring mathematical models to stem-cell derived cardiomyocyte lines can improve predictions of drug-induced changes to their electrophysiology"; dcterms:publisher "Frontiers in Physiology"; ou:openaccess "1"^^xsd:boolean; dcterms:contributor "Lei C.L. et al."; bibo:eissn "1664-042X"; ou:vecesCitado "38"; dcterms:creator "Lei C.L."; ou:bibtex "@article{PMID:29311950,title = {Tailoring Mathematical Models to Stem-Cell Derived Cardiomyocyte Lines Can Improve Predictions of Drug-Induced Changes to Their Electrophysiology.},author = {Lei CL and Wang K and Clerx M and Johnstone RH and Hortigon-Vinagre MP and Zamora V and Allan A and Smith GL and Gavaghan DJ and Mirams GR and Polonchuk L},doi = {10.3389/fphys.2017.00986},journal = {Frontiers in Physiology},year = {2017}}"; ou:urlOrcid ; ou:tipoPublicacion "Article"; a ou:Publicacion; vcard:url ; ou:publicadaEnRevista . ou:tienePublicacion . ou:tienePublicacion .