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Science (New York, N.Y.)|March 27, 2001
Memory extinction, learning anew, and learning the new: dissociations in the molecular machinery of learning in cortexD E Berman, Y DudaiJournal of Neuroscience Research|January 1, 1983
Glycoprotein properties of benzodiazepine receptors from calf cerebral cortexR Sherman-Gold, Y DudaiNeuroscience Letters|October 9, 1989
In vivo protein phosphorylation in Drosophila mutants defective in learning and memoryJ D Buxbaum, Y DudaiAnalytical Biochemistry|February 15, 1988
A microtiter-based assay for protein kinase activity suitable for the analysis of large numbers of samples, and its application to the study of Drosophila learning mutantsJ D Buxbaum, Y DudaiJournal of Neurochemistry|October 1, 1987
In vitro protein phosphorylation in head preparations from normal and mutant Drosophila melanogasterJ D Buxbaum, Y DudaiProgress in Biochemical Pharmacology|January 1, 1980
Studies on the properties of benzodiazepine-binding sites from calf cortexY Dudai, R Sherman-GoldBrain Research|October 6, 1980
Solubilization and properties of a benzodiazepine receptor from calf cortexR Sherman-Gold, Y DudaiNeuroscience Letters|November 4, 1981
beta-Carboline binding to deoxycholate solubilized benzodiazepine receptors from calf cerebral cortexR Sherman-Gold, Y DudaiNeurochemical Research|July 1, 1983
Heterogeneity in the physicochemical properties of deoxycholate-solubilized benzodiazepine receptors from calf cerebral cortexR Sherman-Gold, Y DudaiBrain Research|April 27, 1979
Cholinergic binding sites in rat hippocampal formation: properties and ontogenesisJ Ben-Barak, Y DudaiPageof 74