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Intake of saccharin, salt, and ethanol solutions is increased by infusion of a mu opioid agonist into the nucleus accumbensMIN ZHANG; KELLEY, Ann E.Psychopharmacologia. 2002, Vol 159, Num 4, pp 415-423, issn 0033-3158Article

Nucleus accumbens acetylcholine regulates appetitive learning and motivation for food via activation of muscarinic receptorsPRATT, Wayne E; KELLEY, Ann E.Behavioral neuroscience. 2004, Vol 118, Num 4, pp 730-739, issn 0735-7044, 10 p.Article

Conditioned Fos expression following morphine-paired contextual cue exposure is environment specificSCHROEDER, Brock E; KELLEY, Ann E.Behavioral neuroscience. 2002, Vol 116, Num 4, pp 727-732, issn 0735-7044Article

Central amygdalar and dorsal striatal NMDA receptor involvement in instrumental learning and spontaneous behaviorANDRZEJEWSKI, Matthew E; SADEGHIAN, Kenneth; KELLEY, Ann E et al.Behavioral neuroscience. 2004, Vol 118, Num 4, pp 715-729, issn 0735-7044, 15 p.Article

Serotonin-dopamine interactions in the control of conditioned reinforcement and motor behaviorSASAKI-ADAMS, Deanna M; KELLEY, Ann E.Neuropsychopharmacology (New York, NY). 2001, Vol 25, Num 3, pp 440-452, issn 0893-133XArticle

Amylin infusion into rat nucleus accumbens potently depresses motor activity and ingestive behaviorBALDO, Brian A; KELLEY, Ann E.American journal of physiology. Regulatory, integrative and comparative physiology. 2001, Vol 50, Num 4, pp R1232-R1242, issn 0363-6119Article

Nucleus accumbens opioid, GABAergic, and dopaminergic modulation of palatable food motivation: Contrasting effects revealed by a progressive ratio study in the ratMIN ZHANG; BALMADRID, Christian; KELLEY, Ann E et al.Behavioral neuroscience. 2003, Vol 117, Num 2, pp 202-211, issn 0735-7044, 10 p.Article

Neural activation profile elicited by cues associated with the anxiogenic drug yohimbine differs from that observed for reward-paired cuesSCHROEDER, Brock E; SCHILTZ, Craig A; KELLEY, Ann E et al.Neuropsychopharmacology (New York, NY). 2003, Vol 28, Num 1, pp 14-21, issn 0893-133X, 8 p.Article

Muscarinic Receptor Antagonism of the Nucleus Accumbens Core Causes Avoidance to Flavor and Spatial CuesPRATT, Wayne E; SPENCER, Robert C; KELLEY, Ann E et al.Behavioral neuroscience. 2007, Vol 121, Num 6, pp 1215-1223, issn 0735-7044, 9 p.Article

Striatal opioid peptide gene expression differentially tracks short-term satiety but does not vary with negative energy balance in a manner opposite to hypothalamic NPYWILL, Matthew J; VANDERHEYDEN, William M; KELLEY, Ann E et al.American journal of physiology. Regulatory, integrative and comparative physiology. 2007, Vol 61, Num 1, issn 0363-6119, R217-R226Article

Differential behavioral effects of nicotine exposure in adolescent and adult ratsSCHOCHET, Terri L; KELLEY, Ann E; LANDRY, Charles F et al.Psychopharmacologia. 2004, Vol 175, Num 3, pp 265-273, issn 0033-3158, 9 p.Article

Acute stress and nicotine cues interact to unveil locomotor arousal and activity-dependent gene expression in the prefrontal cortexSCHILTZ, Craig A; KELLEY, Ann E; LANDRY, Charles F et al.Biological psychiatry (1969). 2007, Vol 61, Num 1, pp 127-135, issn 0006-3223, 9 p.Article

Pharmacological characterization of high-fat feeding induced by opioid stimulation of the ventral striatumWILL, Matthew J; PRATT, Wayne E; KELLEY, Ann E et al.Physiology & behavior. 2006, Vol 89, Num 2, pp 226-234, issn 0031-9384, 9 p.Article

Neural systems recruited by drug- and food-related cues : Studies of gene activation in corticolimbic regions : Ingestive mechanisms in obesity, substance abuse and mental disordersKELLEY, Ann E; SCHILTZ, Craig A; LANDRY, Charles F et al.Physiology & behavior. 2005, Vol 86, Num 1-2, pp 11-14, issn 0031-9384, 4 p.Conference Paper

The amygdala is critical for opioid-mediated binge eating of fatWILL, Matthew J; FRANZBLAU, Emily B; KELLEY, Ann E et al.Neuroreport (Oxford). 2004, Vol 15, Num 12, pp 1857-1860, issn 0959-4965, 4 p.Article

Dissociating ventral and dorsal subicular dopamine D1 receptor involvement in instrumental learning, spontaneous motor behavior, and motivation. CommentaryANDRZEJEWSKI, Matthew E; SPENCER, Robert C; KELLEY, Ann E et al.Behavioral neuroscience. 2006, Vol 120, Num 3, issn 0735-7044, 542-553,739-743 [17 p.]Article

A Comparison of Adult and Adolescent Rat Behavior in Operant Learning, Extinction, and Behavioral Inhibition ParadigmsANDRZEJEWSKI, Matthew E; FEIT, Elizabeth C; HARRIS, Rachel et al.Behavioral neuroscience. 2011, Vol 125, Num 1, pp 93-105, issn 0735-7044, 13 p.Article

Operant Learning Requires NMDA-Receptor Activation in the Anterior Cingulate Cortex and Dorsomedial Striatum, but Not in the Orbitofrontal CortexMCKEE, Brenda L; KELLEY, Ann E; MOSER, Hannah R et al.Behavioral neuroscience. 2010, Vol 124, Num 4, pp 500-509, issn 0735-7044, 10 p.Article

Corticostriatal-hypothalamic circuitry and food motivation : Integration of energy, action and rewardKELLEY, Ann E; BALDO, Brian A; PRATT, Wayne E et al.Physiology & behavior. 2005, Vol 86, Num 5, pp 773-795, issn 0031-9384, 23 p.Article

Muscarinic receptor antagonism causes a functional alteration in nucleus accumbens μ-opiate-mediated feeding behaviorPERRY, Michelle L; BALDO, Brian A; ANDRZEJEWSKI, Matthew E et al.Behavioural brain research. 2009, Vol 197, Num 1, pp 225-229, issn 0166-4328, 5 p.Article

Ventral striatal control of appetitive motivation: role in ingestive behavior and reward-related learningKELLEY, Ann E.Neuroscience and biobehavioral reviews. 2004, Vol 27, Num 8, pp 765-776, issn 0149-7634, 12 p.Conference Paper

Increases in food intake or food-seeking behavior induced by GABAergic, opioid, or dopaminergic stimulation of the nucleus accumbens: is it hunger?HANLON, Erin C; BALDO, Brian A; SADEGHIAN, Ken et al.Psychopharmacologia. 2004, Vol 172, Num 3, pp 241-247, issn 0033-3158, 7 p.Article

Effects of selective dopamine D1 or D2 receptor blockade within nucleus accumbens subregions on ingestive behavior and associated motor activityBALDO, Brian A; SADEGHIAN, Ken; BASSO, Ana Maria et al.Behavioural brain research. 2002, Vol 137, Num 1-2, pp 165-177, issn 0166-4328, 13 p.Article

Methylphenidate preferentially increases catecholamine neurotransmission within the prefrontal cortex at low doses that enhance cognitive functionBERRIDGE, Craig W; DEVILBISS, David M; ANDRZEJEWSKI, Matthew E et al.Biological psychiatry (1969). 2006, Vol 60, Num 10, pp 1111-1120, issn 0006-3223, 10 p.Article

Hyperphagia induced by GABAA receptor-mediated inhibition of the nucleus accumbens shell : Dependence on intact neural output from the central amygdaloid regionBALDO, Brian A; ALSENE, Karen M; NEGRON, Alejandro et al.Behavioral neuroscience. 2005, Vol 119, Num 5, pp 1195-1206, issn 0735-7044, 12 p.Article

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