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International Journal of Molecular Sciences|August 9, 2019
Role of Carbonic Anhydrases and Inhibitors in Acid-Base Physiology: Insights from Mathematical ModelingRossana Occhipinti, Walter F Boron
Progress in Biophysics and Molecular Biology|January 25, 2015
Mathematical modeling of acid-base physiologyRossana Occhipinti, Walter F Boron
Journal of Neurophysiology|October 17, 2008
Astrocytes as the glucose shunt for glutamatergic neurons at high activity: an in silico studyRossana Occhipinti, Erkki Somersalo, Daniela Calvetti
Advances in Experimental Medicine and Biology|March 30, 2011
Interpretation of NMR spectroscopy human brain data with a multi-compartment computational model of cerebral metabolismRossana Occhipinti, Erkki Somersalo, Daniela Calvetti
Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism|July 29, 2010
Energetics of inhibition: insights with a computational model of the human GABAergic neuron-astrocyte cellular complexRossana Occhipinti, Erkki Somersalo, Daniela Calvetti
International Journal of Molecular Sciences|February 25, 2023
Potential Novel Role of Membrane-Associated Carbonic Anhydrases in the KidneySeong-Ki Lee, Walter F Boron, Rossana Occhipinti
American Journal of Physiology. Cell Physiology|June 27, 2014
Evidence from simultaneous intracellular- and surface-pH transients that carbonic anhydrase IV enhances CO2 fluxes across Xenopus oocyte plasma membranesRaif Musa-Aziz, Rossana Occhipinti, Walter F Boron
American Journal of Physiology. Cell Physiology|June 27, 2014
Evidence from simultaneous intracellular- and surface-pH transients that carbonic anhydrase II enhances CO2 fluxes across Xenopus oocyte plasma membranesRaif Musa-Aziz, Rossana Occhipinti, Walter F Boron
Biochemical Pharmacology|October 11, 2020
The therapeutic importance of acid-base balanceBianca N Quade, Mark D Parker, Rossana Occhipinti
American Journal of Physiology. Cell Physiology|June 27, 2014
Evidence from mathematical modeling that carbonic anhydrase II and IV enhance CO2 fluxes across Xenopus oocyte plasma membranesRossana Occhipinti, Raif Musa-Aziz, Walter F Boron
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