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Biophysical Journal|April 17, 2020
All-Optical Electrophysiology Refines Populations of In Silico Human iPSC-CMs for Drug EvaluationMichelangelo Paci, Elisa Passini, Aleksandra Klimas, et al.Nature Communications|August 29, 2013
A comprehensive multiscale framework for simulating optogenetics in the heartPatrick M Boyle, John C Williams, Christina M Ambrosi, et al.The Journal of Membrane Biology|February 5, 2010
A transmural gradient in the cardiac Na/K pump generates a transmural gradient in Na/Ca exchangeWei Wang, Junyuan Gao, Emilia Entcheva, et al.Biorxiv : the Preprint Server for Biology|July 9, 2025
Response of human iPSC-cardiomyocytes to adrenergic drugs assessed by high-throughput pericellular oxygen measurementsWeizhen Li, David McLeod, Yuli W Heinson, et al.Communications Biology|November 8, 2023
Opto-SICM framework combines optogenetics with scanning ion conductance microscopy for probing cell-to-cell contactsQianqian Song, Anita Alvarez-Laviada, Sarah E Schrup, et al.Scientific Reports|February 25, 2021
Optogenetic current in myofibroblasts acutely alters electrophysiology and conduction of co-cultured cardiomyocytesGeran M Kostecki, Yu Shi, Christopher S Chen, et al.Scientific Reports|April 30, 2021
OptoGap is an optogenetics-enabled assay for quantification of cell-cell coupling in multicellular cardiac tissuePatrick M Boyle, Jinzhu Yu, Aleksandra Klimas, et al.Nature Photonics|April 9, 2016
Optical control of excitation waves in cardiac tissueRebecca A B Burton, Aleksandra Klimas, Christina M Ambrosi, et al.Frontiers in Bioengineering and Biotechnology|July 3, 2023
High-throughput optical sensing of peri-cellular oxygen in cardiac cells: system characterization, calibration, and testingWeizhen Li, David McLeod, John T Ketzenberger, et al.Biorxiv : the Preprint Server for Biology|May 10, 2023
High-throughput optical sensing of peri-cellular oxygen in cardiac cells: system characterization, calibration, and testingWeizhen Li, David McLeod, John T Ketzenberger, et al.Pageof 10