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The European Journal of Neuroscience|April 13, 2000
Lack of glucocorticoids attenuates the self-stimulation-induced increase in the in vivo synthesis rate of dopamine but not serotonin in the rat nucleus accumbensD Nakahara, M Nakamura, Y Oki, et al.Neuroscience Letters|September 25, 1989
The effect of uptake inhibition on dopamine release from the nucleus accumbens of rats during self- or forced stimulation of the medial forebrain bundle: a microdialysis studyD Nakahara, N Ozaki, V Kapoor, et al.Brain Research|May 2, 1994
Characterization of the in vivo action of (R)-salsolinol, an endogenous metabolite of alcohol, on serotonin and dopamine metabolism: a microdialysis studyD Nakahara, W Maruyama, H Hashiguti, et al.Neuroscience|October 10, 2001
Intracranial self-stimulation induces Fos expression in GABAergic neurons in the rat mesopontine tegmentumD Nakahara, Y Ishida, M Nakamura, et al.Brain Research|March 6, 1992
Differential effect of self-stimulation on dopamine release and metabolism in the rat medial frontal cortex, nucleus accumbens and striatum studied by in vivo microdialysisD Nakahara, K Fuchikami, N Ozaki, et al.Experimental Neurology|December 1, 1994
Biochemical and immunocytochemical changes induced by intrastriatal 6-hydroxydopamine injection in the rat nigrostriatal dopamine neuron system: evidence for cell death in the substantia nigraY Ichitani, H Okamura, D Nakahara, et al.Journal of Neurochemistry|December 1, 1989
Effects of apomorphine on in vivo release of dopamine and its metabolites in the prefrontal cortex and the striatum, studied by a microdialysis methodN Ozaki, D Nakahara, H Miura, et al.Neuroscience|January 1, 1990
Preferential release of neuroactive amino acids from the ventrolateral medulla of the rat in vivo as measured by microdialysisV Kapoor, D Nakahara, R J Blood, et al.Journal of Neural Transmission. General Section|January 1, 1993
Naturally-occurring isoquinolines perturb monamine metabolism in the brain: studied by in vivo microdialysisW Maruyama, D Nakahara, P Dostert, et al.Psychopharmacology|December 31, 2005
Roles of pedunculopontine tegmental cholinergic receptors in brain stimulation reward in the ratJ Chen, M Nakamura, T Kawamura, et al.Pageof 5