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Brain Research|May 16, 1994
N-methyl-D-aspartic acid-induced lesions of the nucleus accumbens and/or ventral pallidum fail to attenuate lateral hypothalamic self-stimulation rewardP I Johnson, J R StellarSynapse (New York, N.Y.)|October 6, 2000
Assessment of tyrosine hydroxylase immunoreactive innervation in five subregions of the nucleus accumbens shell in rats treated with repeated cocaineM S Todtenkopf, J R StellarBehavioral Neuroscience|December 1, 1987
Effects of knife-cut lesions of the medial forebrain bundle in self-stimulating ratsJ D Janas, J R StellarPharmacology, Biochemistry, and Behavior|June 1, 1988
Neonatal dopamine depletions spare lateral hypothalamic stimulation reward in adult ratsJ R Stellar, M Waraczynski, J P BrunoPhysiology & Behavior|December 1, 1982
Role of ipsilateral forebrain in lateral hypothalamic stimulation reward in ratsJ R Stellar, J Illes, L E MillsJournal of Neuroscience Methods|March 1, 1997
A simple and reliable method for delivering small fluid volumes to the brain of a freely moving ratG W Hesse, J R Stellar, J ChevrettePhysiology & Behavior|January 1, 1985
An investigation of the factors affecting development of frontal cortex self-stimulationD Corbett, L R Silva, J R StellarPhysiology & Behavior|January 1, 1987
Reward saturation in medial forebrain bundle self-stimulationM Waraczynski, J R Stellar, C R GallistelNeuroscience|October 16, 2002
Withdrawal duration differentially affects c-fos expression in the medial prefrontal cortex and discrete subregions of the nucleus accumbens in cocaine-sensitized ratsM S Todtenkopf, A Mihalakopoulos, J R StellarPharmacology, Biochemistry, and Behavior|March 1, 1983
Effects of peripheral and central dopamine blockade on lateral hypothalamic self-stimulation: evidence for both reward and motor deficitsJ R Stellar, A E Kelley, D CorbettPageof 6