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Pflugers Archiv : European Journal of Physiology|August 1, 1986
ATP maintains ATP-inhibited K+ channels in an operational stateI Findlay, M J DunneFEBS Letters|September 23, 1985
Voltage-activated Ca2+ currents in insulin-secreting cellsI Findlay, M J DunneThe Journal of Membrane Biology|January 1, 1985
High-conductance K+ channel in pancreatic islet cells can be activated and inactivated by internal calciumI Findlay, M J Dunne, O H PetersenThe Journal of Membrane Biology|June 1, 1988
Effects of pyridine nucleotides on the gating of ATP-sensitive potassium channels in insulin-secreting cellsM J Dunne, I Findlay, O H PetersenThe Journal of Membrane Biology|January 1, 1985
ATP-sensitive inward rectifier and voltage- and calcium-activated K+ channels in cultured pancreatic islet cellsI Findlay, M J Dunne, O H PetersenThe Journal of Experimental Biology|September 1, 1986
Messenger-mediated control of potassium channels in secretory cellsO H Petersen, I Findlay, K Suzuki, et al.The Journal of Membrane Biology|January 1, 1986
ATP-sensitive K+ channels in an insulin-secreting cell line are inhibited by D-glyceraldehyde and activated by membrane permeabilizationM J Dunne, I Findlay, O H Petersen, et al.FEBS Letters|June 3, 1985
Quinine inhibits Ca2+-independent K+ channels whereas tetraethylammonium inhibits Ca2+-activated K+ channels in insulin-secreting cellsI Findlay, M J Dunne, S Ullrich, et al.Methods in Molecular Medicine|March 11, 2011
Single cell PCR : theory, practice, and clinical applicationsI FindlayPageof 15