OptoDyCE as an automated system for high-throughput all-optical dynamic cardiac electrophysiology A Klimas, CM Ambrosi, J Yu, JC Williams, H Bien, E Entcheva Nature communications 7 (1), 11542, 2016 | 162 | 2016 |
Cardiac applications of optogenetics CM Ambrosi, A Klimas, J Yu, E Entcheva Progress in biophysics and molecular biology 115 (2-3), 294-304, 2014 | 89 | 2014 |
Cardiac Optogenetics: Enhancement by All-trans-Retinal J Yu, K Chen, RV Lucero, CM Ambrosi, E Entcheva Scientific reports 5 (1), 16542, 2015 | 30 | 2015 |
Inscribing optical excitability to non-excitable cardiac cells: viral delivery of optogenetic tools in primary cardiac fibroblasts J Yu, E Entcheva Optogenetics: Methods and Protocols, 303-317, 2016 | 24 | 2016 |
OptoGap is an optogenetics-enabled assay for quantification of cell–cell coupling in multicellular cardiac tissue PM Boyle, J Yu, A Klimas, JC Williams, NA Trayanova, E Entcheva Scientific reports 11 (1), 9310, 2021 | 12 | 2021 |
OptoGap: an optogenetics-enabled assay for quantification of cell-cell coupling in multicellular cardiac tissue J Yu, PM Boyle, A Klimas, JC Williams, N Trayanova, E Entcheva bioRxiv, 171397, 2017 | 6 | 2017 |
High-throughput contactless optogenetic assay for cellular coupling: illustration by Chr2-light-sensitized cardiac fibroblasts and cardiomyocytes J Yu, PM Boyle, CM Ambrosi, NA Trayanova, E Entcheva Circulation 128 (suppl_22), A14943-A14943, 2013 | 6 | 2013 |
Disease modeling in human induced pluripotent stem cell derived cardiomyocytes using high-throughput all-optical dynamic cardiac electrophysiology A Klimas, Y Wu, CM Ambrosi, J Yu, JC Williams, H Bien, GJ Lyon, ... Frontiers in Optics, FF3A. 3, 2016 | 2 | 2016 |