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Learning & Memory (Cold Spring Harbor, N.Y.)|June 11, 2024
Reinforcement expectation in the honeybee (Apis mellifera): Can downshifts in reinforcement show conditioned inhibition?Shawn Mahoney, Jay Hosler, Brian H SmithScience Advances|September 1, 2018
Hyperbolic geometry of the olfactory spaceYuansheng Zhou, Brian H Smith, Tatyana O SharpeePlos One|January 27, 2011
Distribution of the octopamine receptor AmOA1 in the honey bee brainIrina Sinakevitch, Julie A Mustard, Brian H SmithBehavioral Neuroscience|January 28, 2009
A honeybee's ability to learn, recognize, and discriminate odors depends upon odor sampling time and concentrationGeraldine A Wright, Michelle Carlton, Brian H SmithJournal of Insect Physiology|August 16, 2023
A mitotoxic fungicide alters post-ingestive glucose signals necessary for associative learning in honey beesNicole S DesJardins, Brian H Smith, Jon F HarrisonPhysica D. Nonlinear Phenomena|May 11, 2010
Analyzing Neuronal Networks Using Discrete-Time DynamicsSungwoo Ahn, Brian H Smith, Alla Borisyuk, et al.The Journal of Experimental Biology|July 15, 2016
Learning about natural variation of odor mixtures enhances categorization in early olfactory processingFernando F Locatelli, Patricia C Fernandez, Brian H SmithJournal of Neurophysiology|February 27, 2004
Molecular features of odorants systematically influence slow temporal responses across clusters of coordinated antennal lobe units in the moth Manduca sextaKevin C Daly, Geraldine A Wright, Brian H SmithJournal of Insect Physiology|December 1, 2009
Modulation of motor behavior by dopamine and the D1-like dopamine receptor AmDOP2 in the honey beeJulie A Mustard, Priscilla M Pham, Brian H SmithFrontiers in Systems Neuroscience|November 9, 2017
The Biogenic Amine Tyramine and its Receptor (AmTyr1) in Olfactory Neuropils in the Honey Bee (Apis mellifera) BrainIrina T Sinakevitch, Sasha M Daskalova, Brian H SmithPageof 9