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The Journal of Physiology|January 25, 2017
In vitro models of the cardiac microenvironment to study myocyte and non-myocyte crosstalk: bioinspired approaches beyond the polystyrene dishCelinda M Kofron, Ulrike MendeCellular and Molecular Bioengineering|July 14, 2010
Optimization by Response Surface Methodology of Confluent and Aligned Cellular Monolayers for Nerve GuidanceCelinda M Kofron, Diane Hoffman-KimLife Sciences|March 31, 2015
Heterotrimeric G protein-mediated signaling and its non-canonical regulation in the heartPeng Zhang, Celinda M Kofron, Ulrike MendeJournal of Neural Engineering|December 24, 2008
Neurite outgrowth at the interface of 2D and 3D growth environmentsCelinda M Kofron, Vivian J Fong, Diane Hoffman-KimMethods in Molecular Biology (Clifton, N.J.)|May 26, 2022
Arrhythmia Assessment in Heterotypic Human Cardiac Myocyte-Fibroblast MicrotissuesCelinda M Kofron, Bum-Rak Choi, Kareen L K CoulombeMedical Devices (Auckland, N.Z.)|July 24, 2023
Endotracheal Intubation of Difficult Airways in Emergency Settings: A Guide for InnovatorsSamantha Maguire, Phillip R Schmitt, Eliza Sternlicht, et al.Annals of Biomedical Engineering|May 5, 2010
Neurite outgrowth at the biomimetic interfaceCelinda M Kofron, Yu-Ting Liu, Cristina Y López-Fagundo, et al.Toxicological Sciences : an Official Journal of the Society of Toxicology|June 19, 2024
In vitro to in vivo extrapolation from 3D hiPSC-derived cardiac microtissues and physiologically based pharmacokinetic modeling to inform next-generation arrhythmia risk assessmentMark C Daley, Marjory Moreau, Peter Bronk, et al.Plos One|May 2, 2018
Directed fusion of cardiac spheroids into larger heterocellular microtissues enables investigation of cardiac action potential propagation via cardiac fibroblastsTae Yun Kim, Celinda M Kofron, Michelle E King, et al.Scientific Reports|May 14, 2021
A predictive in vitro risk assessment platform for pro-arrhythmic toxicity using human 3D cardiac microtissuesCelinda M Kofron, Tae Yun Kim, Fabiola Munarin, et al.Pageof 2