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Revista De Saude Publica|June 1, 1996
[Presence of metacyclical promastigotes of Leishmania pifanoi in the hypopharynx of Lutzomyia youngi and their sugar consumption]E Rojas, J V ScorzaRevista De Saude Publica|February 1, 1995
[Leishmania braziliensis: isolation from lesions by inoculation of hamsters with and without addition of salivary gland lysate from Lutzomyia youngi]E Rojas, J V ScorzaThe Journal of Physiology|February 1, 1976
The temporal and steady-state relationships between activation of the sodium conductance and movement of the gating particles in the squid giant axonR D Keynes, E RojasQuarterly Journal of Experimental Physiology (Cambridge, England)|January 1, 1982
Temperature dependence of the sodium channel gating kinetics in the node of RanvierC A Collins, E RojasMemorias Do Instituto Oswaldo Cruz|January 1, 1990
[Xenodiagnosis using Lutzomyia youngi in Venezuelan cases of cutaneous leishmaniasis due to Leishmania braziliensis]E Rojas, J V ScorzaFEBS Letters|May 5, 1986
Modulation of K+ conductance by intracellular pH in pancreatic beta-cellsL M Rosario, E RojasFEBS Letters|June 5, 1989
Muscarinic receptor modulation of glucose-induced electrical activity in mouse pancreatic B-cellsR M Santos, E RojasPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|June 10, 1975
On the relation between displacement currents and activation of the sodium conductance in the squid giant axonE Rojas, R D KeynesProceedings of the National Academy of Sciences of the United States of America|May 1, 1988
Ca2+-activated synexin forms highly selective, voltage-gated Ca2+ channels in phosphatidylserine bilayer membranesH B Pollard, E RojasThe Journal of Physiology|June 1, 1974
Kinetics and steady-state properties of the charged system controlling sodium conductance in the squid giant axonR D Keynes, E RojasPageof 58