Mostrando 3 resultados de: 3
Fabrication of human myocardium using multidimensional modelling of engineered tissues
ArticleAbstract: Biofabrication of human tissues has seen a meteoric growth triggered by recent technical advancementPalabras claves:computational models, hiPSC, human cardiac tissue engineering, melt electrowritingAutores:Atienza F., de-Juan-Pardo E.M., Doblare M., Esther Pueyo, Fernández-Avilés F., Fernández-Santos M.E., Flandes-Iparraguirre M., Gavira J.J., Iglesias-García O., Laita N., Mazo M.M., Montero-Calle P., Mountris K.A., Peña E., Prósper F., Rosales R.M., S de la Nava A.Fuentes:scopusIn Silico Electrophysiological Evaluation of Scaffold Geometries for Cardiac Tissue Engineering
Conference ObjectAbstract: Human induced pluripotent stem cell-derived car-diomyocytes (hiPSC-CMs) cultured on bio-printed scafPalabras claves:Autores:Doblare M., Esther Pueyo, Mazo M.M., Mountris K.A., Rosales R.M.Fuentes:scopusMeshless Electrophysiological Modeling of Cardiac Resynchronization Therapy—Benchmark Analysis with Finite-Element Methods in Experimental Data
ArticleAbstract: Computational models of cardiac electrophysiology are promising tools for reducing the rates of non-Palabras claves:cardiac resynchronization therapy, CRT-EPiggy19 challenge, electrophysiology, meshless model, Parameter optimisation, Smoothed particle hydrodynamicsAutores:Albors C., Camara O., Cedilnik N., Dokuchaev A., Esther Pueyo, Gomez J.F., Khamzin S., Lluch È., Mansi T., Morales H.G., Mountris K.A., Sebastián R., Sermesant M., Solovyova O.Fuentes:scopus