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Neurochemistry International|December 5, 1998
Different temperature dependence of carrier-mediated (cytoplasmic) and stimulus-evoked (exocytotic) release of transmitter: a simple method to separate the two types of releaseE S ViziActa Biologica Hungarica|November 26, 1999
Presynaptic modulation of transmitter release via alpha2-adrenoceptors: nonsynaptic interactionsE S ViziAnnals of the New York Academy of Sciences|July 21, 1998
Receptor-mediated local fine-tuning by noradrenergic innervation of neuroendocrine and immune systemsE S ViziBritish Journal of Pharmacology|November 1, 1989
In favour of the vesicular hypothesis: neurochemical evidence that vesamicol (AH5183) inhibits stimulation-evoked release of acetylcholine from neuromuscular junctionE S ViziThe Journal of Physiology|May 1, 1977
Termination of transmitter release by stimulation of sodium-potassium activated ATPaseE S ViziActa Biologica Academiae Scientiarum Hungaricae|January 1, 1982
Non-synaptic intercellular communication: presynaptic inhibitionE S ViziThe Journal of Physiology|October 1, 1972
Stimulation, by inhibition of (Na + -K + -Mg 2+ )-activated ATP-ase, of acetylcholine release in cortical slices from rat brainE S ViziBritish Journal of Pharmacology|April 1, 1973
Acetylcholine release from guinea-pig ileum by parasympathetic ganglion stimulants and gastrin-like polypeptidesE S ViziNaunyn-Schmiedeberg'S Archives of Pharmacology|May 1, 1991
Evidence that catecholamines increase acetylcholine release from neuromuscular junction through stimulation of alpha-1 adrenoceptorsE S ViziPharmacological Reviews|March 4, 2000
Role of high-affinity receptors and membrane transporters in nonsynaptic communication and drug action in the central nervous systemE S ViziPageof 27