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The American Journal of Physiology|December 1, 1977
Transport characteristics of renal collecting tubules: influences of DOCA and dietR G O'Neil, S I HelmanBiophysical Journal|September 1, 1979
Transepithelial current-voltage relationships of toad urinary bladder and colon. Estimates of ENaA and shunt resistanceD D Macchia, S I HelmanBiophysical Journal|July 21, 2001
cAmp activation of apical membrane Cl(-) channels: theoretical considerations for impedance analysisT G Păunescu, S I HelmanBiophysical Journal|July 21, 2001
PGE(2) activation of apical membrane Cl(-) channels in A6 epithelia: impedance analysisT G Păunescu, S I HelmanThe American Journal of Physiology|November 1, 1985
Dependence of intracellular Na+ concentration on apical and basolateral membrane Na+ influx in frog skinJ S Stoddard, S I HelmanThe American Journal of Physiology|January 1, 1977
Stratum corneum of frog skin: inferences for studies of Na entry and transport poolS I Helman, R S FisherThe Journal of General Physiology|May 1, 1977
Microelectrode studies of the active Na transport pathway of frog skinS I Helman, R S FisherThe American Journal of Physiology|December 1, 1982
Interpretation and use of electrical equivalent circuits in studies of epithelial tissuesS I Helman, S M ThompsonThe Journal of General Physiology|March 1, 1986
Na+ and K+ transport at basolateral membranes of epithelial cells. I. Stoichiometry of the Na,K-ATPaseT C Cox, S I HelmanThe Journal of General Physiology|March 1, 1986
Na+ and K+ transport at basolateral membranes of epithelial cells. III. Voltage independence of basolateral membrane Na+ effluxT C Cox, S I HelmanPageof 5