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Circulation Research|June 1, 1992
Kinetics of interaction of the lidocaine metabolite glycylxylidide with the cardiac sodium channel. Additive blockade with lidocaineD J Wendt, C F Starmer, A O GrantBiophysical Journal|July 1, 1984
Mechanisms of use-dependent block of sodium channels in excitable membranes by local anestheticsC F Starmer, A O Grant, H C StraussCirculation Research|December 1, 1983
Unitary sodium channels in isolated cardiac myocytes of rabbitA O Grant, C F Starmer, H C StraussComputers and Biomedical Research, an International Journal|February 1, 1990
An object oriented user interface for analysis of biological dataM A Dietz, A O Grant, C F StarmerWaste Management (New York, N.Y.)|November 25, 2025
Measuring greenhouse gas emissions from composting: A comparative review of methodsDennis Dika Dankwa, Michael Y Boh, O Grant ClarkJournal of Theoretical Biology|February 7, 1987
Ligand binding to transiently accessible sites: mechanisms for varying apparent binding ratesC F Starmer, D L Packer, A O GrantThe American Journal of Physiology|May 1, 1994
Open Na+ channel blockade: multiple rest states revealed by channel interactions with disopyramide and quinidineY I Zilberter, C F Starmer, A O GrantCardiovascular Research|December 31, 2002
What happens when cardiac Na channels lose their function? 1--numerical studies of the vulnerable period in tissue expressing mutant channelsC Frank Starmer, Thomas J Colatsky, Augustus O GrantPacing and Clinical Electrophysiology : PACE|September 1, 1995
Basic concepts in cellular cardiac electrophysiology: Part II: Block of ion channels by antiarrhythmic drugsD W Whalley, D J Wendt, A O GrantThe American Journal of Physiology|December 1, 1992
Na channel kinetics remain stable during perforated-patch recordingsD J Wendt, C F Starmer, A O GrantPageof 41