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The American Journal of Physiology|August 1, 1997
Substrate-dependent expression of Na+ transport and shunt conductance in A6 epitheliaS I Helman, X LiuScience (New York, N.Y.)|July 9, 1971
In vitro techniques for avoiding edge damage in studies of frog skinS I Helman, D A MillerThe Journal of General Physiology|March 1, 1986
Na+ and K+ transport at basolateral membranes of epithelial cells. II. K+ efflux and stoichiometry of the Na,K-ATPaseT C Cox, S I HelmanThe American Journal of Physiology|September 1, 1983
Effects of ouabain and furosemide on basolateral membrane Na efflux of frog skinT C Cox, S I HelmanThe American Journal of Physiology|May 1, 1982
Acidification of luminal fluid by the rabbit cortical collecting tubule perfused in vitroB M Koeppen, S I HelmanThe Journal of General Physiology|April 1, 1990
Blocker-related changes of channel density. Analysis of a three-state model for apical Na channels of frog skinS I Helman, L M BaxendaleThe 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 HelmanPageof 6