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Science (New York, N.Y.)|October 29, 1982
(+)-Amphetamine binding to rat hypothalamus: relation to anorexic potency for phenylethylaminesS M Paul, B Hulihan-Giblin, P SkolnickEuropean Journal of Pharmacology|May 27, 1986
Glucostatic regulation of hypothalamic and brainstem [3H](+)-amphetamine binding during food deprivation and refeedingR L Hauger, B Hulihan-Giblin, P Skolnick, et al.Life Sciences|February 20, 1984
Characteristics of [3H](+)-amphetamine binding sites in the rat central nervous systemR L Hauger, B Hulihan-Giblin, P Skolnick, et al.Brain Research Bulletin|February 1, 1986
Glucose regulates [3H](+)-amphetamine binding and Na+K+ ATPase activity in the hypothalamus: a proposed mechanism for the glucostatic control of feeding and satietyR Hauger, B Hulihan-Giblin, I Angel, et al.Neuropharmacology|March 1, 1986
Increased number of hypothalamic [3H] (+)-amphetamine binding sites in genetically obese (ob/ob) miceR Hauger, B Hulihan-Giblin, S M PaulPharmacology, Biochemistry, and Behavior|January 1, 1982
Comparative neuropharmacology of antianxiety drugsS M Paul, P SkolnickThe Journal of Clinical Psychiatry|November 1, 1983
New concepts in the neurobiology of anxietyP Skolnick, S M PaulThe Journal of Clinical Psychiatry|December 1, 1982
Buspirone: chemistry, pharmacology, and behaviorP Skolnick, S M PaulScience (New York, N.Y.)|November 24, 1978
Rapid changes in brain benzodiazepine receptors after experimental seizuresS M Paul, P SkolnickJournal of Neurochemistry|March 1, 1993
Identification of tryptophan 2,3-dioxygenase RNA in rodent brainR Haber, D Bessette, B Hulihan-Giblin, et al.Pageof 60