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Molecules and Cells|August 29, 2009
Modeling the cardiac Na(+)/H (+) exchanger based on major experimental findingsChae Young Cha, Akinori NomaJournal of Theoretical Biology|May 16, 2012
Steady-state solutions of cell volume in a cardiac myocyte model elaborated for membrane excitation, ion homeostasis and Ca2+ dynamicsChae Young Cha, Akinori NomaPlos One|June 20, 2015
Quantitative Decomposition of Dynamics of Mathematical Cell Models: Method and Application to Ventricular Myocyte ModelsTakao Shimayoshi, Chae Young Cha, Akira AmanoProgress in Biophysics and Molecular Biology|August 17, 2011
Analyzing electrical activities of pancreatic β cells using mathematical modelsChae Young Cha, Trevor Powell, Akinori NomaJournal of Theoretical Biology|May 4, 2010
Characterization of the cardiac Na+/K+ pump by development of a comprehensive and mechanistic modelChiaki Oka, Chae Young Cha, Akinori NomaJournal of Molecular Medicine (Berlin, Germany)|January 19, 2017
A role of PLC/PKC-dependent pathway in GLP-1-stimulated insulin secretionMakoto Shigeto, Chae Young Cha, Patrik Rorsman, et al.The Journal of General Physiology|June 29, 2011
Time-dependent changes in membrane excitability during glucose-induced bursting activity in pancreatic β cellsChae Young Cha, Enrique Santos, Akira Amano, et al.Biophysical Journal|December 17, 2009
A novel method to quantify contribution of channels and transporters to membrane potential dynamicsChae Young Cha, Yukiko Himeno, Takao Shimayoshi, et al.Biophysical Journal|November 18, 2009
A model of Na+/H+ exchanger and its central role in regulation of pH and Na+ in cardiac myocytesChae Young Cha, Chiaki Oka, Yung E Earm, et al.Biophysical Journal|July 23, 2015
A human ventricular myocyte model with a refined representation of excitation-contraction couplingYukiko Himeno, Keiichi Asakura, Chae Young Cha, et al.Pageof 2