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Improved Methods for Processing Optical Mapping Signals from Human Left Ventricular Tissues at Baseline and following Adrenergic Stimulation
Conference ObjectAbstract: Optical mapping (OM) allows ex vivo measurement of electrophysiological signals at high spatio-tempoPalabras claves:Autores:Ballester-Cuenca C., Diez E.R., Esther Pueyo, Fañanás-Mastral J., Fresneda-Roldán P.C., Matamala-Adell M., Mountris K.A., Oliván-Viguera A., Pérez-Zabalza M., Rhyins J., Segovia-Roldan M., Sorribas-Berjón F., Vallejo-Gil J.M., Vázquez-Sancho M.Fuentes:scopusMinimally invasive system to reliably characterize ventricular electrophysiology from living donors
ArticleAbstract: Cardiac tissue slices preserve the heterogeneous structure and multicellularity of the myocardium anPalabras claves:Autores:Ballester-Cuenca C., Bellido-Morales J.A., Diez E.R., Esther Pueyo, Fañanás-Mastral J., Fresneda-Roldán P.C., García-Mendívil L., Köhler R., Mancebón-Sierra F.J., Marigil M.Á., Matamala-Adell M., Mountris K.A., Oliván-Viguera A., Ordovás L., Orós-Rodrigo S., Pastor C., Pérez-Zabalza M., Ramos-Marquès E., Sorribas-Berjón F., Vaca-Núñez A.S., Vallejo-Gil J.M., Vázquez-Sancho M.Fuentes:scopus