Nicotine-induced Fos expression in the pedunculopontine mesencephalic tegmentum in the rat
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[1] W. Zieglgänsberger,et al. Immediate-Early Genes in the Central Nervous System , 2012, Springer Berlin Heidelberg.
[2] W. Corrigall,et al. The pedunculopontine tegmental nucleus and the role of cholinergic neurons in nicotine self-administration in the rat: a correlative neuroanatomical and behavioral study , 2000, Neuroscience.
[3] H. Kalant,et al. Differential increase in Fos immunoreactivity in hypothalamic and septal nuclei by arginine8-vasopressin and desglycinamide9-arginine8-vasopressin , 1999, Neuroscience.
[4] S. Turgeon,et al. The delayed effects of phencyclidine enhance amphetamine-induced behavior and striatal c-Fos expression in the rat , 1999, Neuroscience.
[5] D. Kennaway,et al. Nicotine phase shifts the 6-sulphatoxymelatonin rhythm and induces c-Fos in the SCN of rats , 1999, Brain Research Bulletin.
[6] W. Corrigall. Nicotine self-administration in animals as a dependence model. , 1999, Nicotine & tobacco research : official journal of the Society for Research on Nicotine and Tobacco.
[7] N. Nagai,et al. Effects of Nicotine and Footshock Stress on Dopamine Release in the Striatum and Nucleus Accumbens , 1998, Brain Research Bulletin.
[8] T. Herdegen,et al. Inducible and constitutive transcription factors in the mammalian nervous system: control of gene expression by Jun, Fos and Krox, and CREB/ATF proteins , 1998, Brain Research Reviews.
[9] M. Besson,et al. Inducibility of c‐Fos protein in visuo‐motor system and limbic structures after acute and repeated administration of nicotine in the rat , 1998, Synapse.
[10] R. Wise,et al. Effects of Pedunculopontine Tegmental Nucleus Lesions on Responding for Intravenous Heroin under Different Schedules of Reinforcement , 1998, The Journal of Neuroscience.
[11] S. Matta,et al. Response of the hypothalamo-pituitary-adrenal axis to nicotine , 1998, Psychoneuroendocrinology.
[12] B. Wainer,et al. Ultrastructural study of cholinergic and noncholinergic neurons in the pars compacta of the rat pedunculopontine tegmental nucleus , 1997 .
[13] C. Chiamulera,et al. Common Neural Substrates for the Addictive Properties of Nicotine and Cocaine , 1997, Science.
[14] C. Chiamulera,et al. The Reinforcing Properties of Nicotine are Associated with a Specific Patterning of c‐fos Expression in the Rat Brain , 1996, The European journal of neuroscience.
[15] S. Matta,et al. Nicotine-induced cFos expression in the hypothalamic paraventricular nucleus is dependent on brainstem effects: correlations with cFos in catecholaminergic and noncatecholaminergic neurons in the nucleus tractus solitarius. , 1996, Endocrinology.
[16] C. Holmes,et al. GABAergic neurons in the rat pontomesencephalic tegmentum: Codistribution with cholinergic and other tegmental neurons projecting to the posterior lateral hypothalamus , 1995, The Journal of comparative neurology.
[17] J. Bolam,et al. Cholinergic, GABAergic, and glutamate-enriched inputs from the mesopontine tegmentum to the subthalamic nucleus in the rat , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[18] K. Semba,et al. An ultrastructural study of cholinergic and non-cholinergic neurons in the laterodorsal and pedunculopontine tegmental nuclei in the rat , 1995, Neuroscience.
[19] B. K. Hartman,et al. Distribution of pontomesencephalic cholinergic neurons projecting to substantia nigra differs significantly from those projecting to ventral tegmental area , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[20] H. Kalant,et al. Peripheral injection of arginine8-vasopressin increases Fos in specific brain areas. , 1995, European journal of pharmacology.
[21] S. T. Kitai,et al. Glutamatergic and cholinergic inputs from the pedunculopontine tegmental nucleus to dopamine neurons in the substantia nigra pars compacta , 1995, Neuroscience Research.
[22] W. Corrigall,et al. Self-administered nicotine activates the mesolimbic dopamine system through the ventral tegmental area , 1994, Brain Research.
[23] A. Parent,et al. Pedunculopontine nucleus in the squirrel monkey: Distribution of cholinergic and monoaminergic neurons in the mesopontine tegmentum with evidence for the presence of glutamate in cholinergic neurons , 1994, The Journal of comparative neurology.
[24] A. Lança,et al. Reduction of voluntary alcohol intake in the rat by modulation of the dopaminergic mesolimbic system: Transplantation of ventral mesencephalic cell suspensions , 1994, Neuroscience.
[25] T. Svensson,et al. Systemic nicotine‐induced dopamine release in the rat nucleus accumbens is regulated by nicotinic receptors in the ventral tegmental area , 1994, Synapse.
[26] M. Tampakeras,et al. Rewarding brain stimulation: role of tegmental cholinergic neurons that activate dopamine neurons. , 1993, Behavioral neuroscience.
[27] A. Jayaraman,et al. Acute nicotine injections induce c-fos mostly in non-dopaminergic neurons of the midbrain of the rat. , 1993, Brain research. Molecular brain research.
[28] S. Matta,et al. Nicotine stimulates the expression of cFos protein in the parvocellular paraventricular nucleus and brainstem catecholaminergic regions. , 1993, Endocrinology.
[29] S. Matta,et al. Induction and Desensitization of the c-Fos mRNA Response to Nicotine in Rat Brain , 1993, Molecular and Cellular Neuroscience.
[30] S. Sagar,et al. Induction of c-fos immunostaining in the rat brain after the systemic administration of nicotine , 1992, Brain Research Bulletin.
[31] L. Butcher,et al. Organization of central cholinergic neurons revealed by combined in situ hybridization histochemistry and choline-O-acetyltransferase immunocytochemistry , 1992, Neurochemistry International.
[32] M. Benwell,et al. The effects of acute and repeated nicotine treatment on nucleus accumbens dopamine and locomotor activity , 1992, British journal of pharmacology.
[33] J. Bolam,et al. Cholinergic input to dopaminergic neurons in the substantia nigra: A double immunocytochemical study , 1991, Neuroscience.
[34] S. Snyder,et al. Nitric oxide synthase protein and mRNA are discretely localized in neuronal populations of the mammalian CNS together with NADPH diaphorase , 1991, Neuron.
[35] S. Vincent,et al. Neuronal NADPH diaphorase is a nitric oxide synthase. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[36] S. Grant,et al. Glutamate-like immunoreactivity in neurons of the laterodorsal tegmental and pedunculopontine nuclei in the rat , 1990, Neuroscience Letters.
[37] M. Greenberg,et al. The regulation and function of c-fos and other immediate early genes in the nervous system , 1990, Neuron.
[38] D. van der Kooy,et al. The tegmental pedunculopontine nucleus: a brain-stem output of the limbic system critical for the conditioned place preferences produced by morphine and amphetamine , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[39] W. C. Hall,et al. Cholinergic innervation of the superior colliculus in the cat , 1989, The Journal of comparative neurology.
[40] A. Levey,et al. Cholinergic vs. noncholinergic efferents from the mesopontine tegmentum to the extrapyramidal motor system nuclei , 1988, The Journal of comparative neurology.
[41] B. Wainer,et al. Ascending projections from the pedunculopontine tegmental nucleus and the adjacent mesopontine tegmentum in the rat , 1988, The Journal of comparative neurology.
[42] P. Sawchenko,et al. Detection of fos protein during osteogenesis by monoclonal antibodies , 1988, Molecular and cellular biology.
[43] D. Hommer,et al. Innervation of substantia nigra neurons by cholinergic afferents from pedunculopontine nucleus in the rat: neuroanatomical and electrophysiological evidence , 1987, Neuroscience.
[44] P. Reiner,et al. Topographie relations of cholinergic and noradrenergic neurons in the feline pontomesencephalic tegmentum: An immunohistochemical study , 1987, Brain Research Bulletin.
[45] A. Levey,et al. The origins of cholinergic and other subcortical afferents to the thalamus in the rat , 1987, The Journal of comparative neurology.
[46] R. Spencer,et al. A cholinergic projection to the rat substantia nigra from the pedunculopontine tegmental nucleus , 1987, Brain Research.
[47] H. Fibiger,et al. Neuropeptides and nadph-diaphorase activity in the ascending cholinergic reticular system of the rat , 1986, Neuroscience.
[48] J. White,et al. Effects of nicotine on schedule-controlled behaviour Role of fixed-interval length and modification by mecamylamine and chlorpromazine , 1985, Neuropharmacology.
[49] T. Hattori,et al. Organization and efferent projections of nucleus tegmenti pedunculopontinus pars compacta with special reference to its cholinergic aspects , 1984, Neuroscience.
[50] H. Fibiger,et al. NADPH-diaphorase: A selective histochemical marker for the cholinergic neurons of the pontine reticular formation , 1983, Neuroscience Letters.
[51] P. Clarke,et al. Characterization of the locomotor stimulant action of nicotine in tolerant rats , 1983, British journal of pharmacology.
[52] J. Pratt,et al. Nicotine cue in rats analysed with drugs acting on cholinergic and 5-hydroxytryptamine mechanisms , 1983, Neuropharmacology.
[53] A. Levey,et al. Distribution of cholinergic neurons in rat brain: Demonstrated by the immunocytochemical localization of choline acetyltransferase , 1983, The Journal of comparative neurology.
[54] G. Evan. Immediate-early genes — how immediate and why early? , 1995 .
[55] M. Dragunow. Differential expression of immediate-early genes during synaptic plasticity, seizures and brain injury suggests specific functions for these molecules in brain neurons , 1995 .
[56] S. Hunt,et al. Immediate-early gene activation as a window on mechanism in the nervous system , 1995 .
[57] R. Grzanna,et al. Activation of Immediate Early Genes By Drugs of Abuse : (NIDA Research Monograph ; 125) , 1993 .
[58] Graybiel Am. Acute effects of psychomotor stimulant drugs on gene expression in the striatum. , 1993 .
[59] Gerfen Cr. Functional organization of the striatum: relevance to actions of psychostimulant drugs of abuse. , 1993 .
[60] G. Paxinos,et al. The Rat Brain in Stereotaxic Coordinates , 1983 .