Dopaminergic Neurons Intrinsic to the Primate Striatum
暂无分享,去创建一个
R. Turner | M. Delong | A. Levey | J. Walters | J. T. Greenamyre | R. Turner | V. Chockkan | R. Betarbet | K. Allers | J. R. Walters | J. Greenamyre | M. DeLong | Vijay Chockkan | Ns | Mallinckrodt Scholar | Award
[1] J. Altman,et al. Are New Neurons Formed in the Brains of Adult Mammals? , 1962, Science.
[2] A. Sjoerdsma,et al. ELUCIDATION OF THE RATE-LIMITING STEP IN NOREPINEPHRINE BIOSYNTHESIS IN THE PERFUSED GUINEA-PIG HEART. , 1965, The Journal of pharmacology and experimental therapeutics.
[3] A. Sjoerdsma,et al. End-product inhibition of tyrosine hydroxylase as a possible mechanism for regulation of norepinephrine synthesis. , 1967, Molecular pharmacology.
[4] U. Ungerstedt,et al. 6-Hydroxy-dopamine induced degeneration of central monoamine neurons. , 1968, European journal of pharmacology.
[5] G. Shepherd. Physiological evidence for dendrodendritic synaptic interactions in the rabbit's olfactory glomerulus. , 1971, Brain Research.
[6] T. Powell,et al. The structure of the caudate nucleus of the cat: light and electron microscopy. , 1971, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[7] Gordon M. Shephero. Physiological evidence for dendrodendritic synaptic interactions in the rabbit's olfactory glomerulus , 1971 .
[8] G. Shepherd,et al. Short‐axon cells in the olfactory bulb: dendrodendritic synaptic interactions. , 1975, The Journal of physiology.
[9] T. Pasik,et al. A Golgi study of neuronal types in the neostriatum of monkeys , 1976, Brain Research.
[10] D. Prince,et al. Dopamine action on hippocampal pyramidal cells , 1982, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[11] S. T. Kitai,et al. Morphological and physiological properties of neostriatal neurons: An intracellular horseradish peroxidase study in the rat , 1982, Neuroscience.
[12] R. Nicoll,et al. Pharmacological evidence for two kinds of GABA receptors on rat hippocampal pyramidal cells studied in vitro , 1982, The Journal of physiology.
[13] P. Somogyi,et al. A type of aspiny neuron in the rat neostriatum accumulates [3H]γ‐aminobutyric acid: Combination of golgi‐staining, autoradiography, and electron microscopy , 1983, The Journal of comparative neurology.
[14] J. Langston,et al. Chronic Parkinsonism in humans due to a product of meperidine-analog synthesis. , 1983, Science.
[15] H. Fibiger,et al. Histochemical demonstration of separate populations of somatostatin and cholinergic neurons in the rat striatum , 1983, Neuroscience Letters.
[16] D. Jacobowitz,et al. A primate model of parkinsonism: selective destruction of dopaminergic neurons in the pars compacta of the substantia nigra by N-methyl-4-phenyl-1,2,3,6-tetrahydropyridine. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[17] G. Shepherd,et al. Evoked field potential analysis of dopaminergic mechanisms in the isolated turtle olfactory bulb , 1983, Neuroscience.
[18] T. Hökfelt,et al. NADPH‐diaphorase: A selective histochemical marker for striatal neurons containing both somatostatin‐ and avian pancreatic polypeptide (APP)‐like immunoreactivities , 1983, The Journal of comparative neurology.
[19] A. D. Smith,et al. Characterization of cholinergic neurons in the rat neostriatum. A combination of choline acetyltransferase immunocytochemistry, Golgi-impregnation and electron microscopy , 1984, Neuroscience.
[20] R. Duvoisin,et al. Dopaminergic neurotoxicity of 1-methyl-4-phenyl-1,2,5,6-tetrahydropyridine in mice. , 1984, Science.
[21] W. Oertel,et al. Immunocytochemical studies of GABAergic neurons in rat basal ganglia and their relations to other neuronal systems , 1984, Neuroscience Letters.
[22] T. Hökfelt,et al. Coexistence of tyrosine hydroxylase-like and gamma-aminobutyric acid-like immunoreactivities in neurons of the arcuate nucleus. , 1984, Neuroendocrinology.
[23] C. Gerfen,et al. The neostriatal mosaic: compartmental distribution of calcium-binding protein and parvalbumin in the basal ganglia of the rat and monkey. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[24] A. Parent,et al. Neuropeptide Y-immunoreactive neurons in the striatum of cat and monkey: Morphological characteristics, intrinsic organization and co-localization with somatostatin , 1986, Brain Research.
[25] Richard F. Martin,et al. Primate neostriatal neurons containing tyrosine hydroxylase: Immunohistochemical evidence , 1987, Neuroscience Letters.
[26] L. Descarries,et al. Distribution of GABA‐immunoreactive neurons in the basal ganglia of the squirrel monkey (Saimiri sciureus) , 1987, The Journal of comparative neurology.
[27] H. Kita,et al. Efferent projections of the subthalamic nucleus in the rat: Light and electron microscopic analysis with the PHA‐L method , 1987, The Journal of comparative neurology.
[28] E G Jones,et al. Evidence for coexistence of GABA and dopamine in neurons of the rat olfactory bulb , 1987, The Journal of comparative neurology.
[29] R. Roth,et al. Fetal dopamine neural grafts: extended reversal of methylphenyltetrahydropyridine-induced parkinsonism in monkeys. , 1988, Progress in brain research.
[30] Kaplan Ms,et al. Plasticity after brain lesions: contemporary concepts. , 1988, Archives of physical medicine and rehabilitation.
[31] H. Kita,et al. Glutamate decarboxylase immunoreactive neurons in rat neostriatum: their morphological types and populations , 1988, Brain Research.
[32] Kaplan Ms,et al. Plasticity after brain lesions: contemporary concepts. , 1988, Archives of physical medicine and rehabilitation.
[33] T Pasik,et al. GABAergic elements in the neuronal circuits of the monkey neostriatum: A light and electron microscopic immunocytochemical study , 1988, The Journal of comparative neurology.
[34] T. Hattori,et al. Tyrosine hydroxylase-like immunoreactive neurons in the striatum of the rat , 1989, Neuroscience Letters.
[35] M. Schwarzschild,et al. Acute regulation of tyrosine hydroxylase by nerve activity and by neurotransmitters via phosphorylation. , 1989, Annual review of neuroscience.
[36] L. Olson,et al. Abnormal expression of tyrosine hydroxylase-like immunoreactivity in intraocular transplants of rat caudate nucleus , 1989, Neuroscience Letters.
[37] H. Wagner,et al. GABA and tyrosine hydroxylase immunocytochemistry reveal different patterns of colocalization in retinal neurons of various vertebrates , 1990, The Journal of comparative neurology.
[38] H. Kita,et al. Parvalbumin-immunoreactive neurons in the rat neostriatum: a light and electron microscopic study , 1990, Brain Research.
[39] Charles J. Wilson,et al. Parvalbumin‐containing gabaergic interneurons in the rat neostriatum , 1990, The Journal of comparative neurology.
[40] M. Noble,et al. Development and regeneration in the central nervous system. , 1990, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[41] L. Iacovitti. Effects of a novel differentiation factor on the development of catecholamine traits in noncatecholamine neurons from various regions of the rat brain: studies in tissue culture , 1991, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[42] S. Snyder,et al. Nitric oxide synthase and neuronal NADPH diaphorase are identical in brain and peripheral tissues. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[43] G Bernardi,et al. Electrophysiology of dopamine-denervated striatal neurons. Implications for Parkinson's disease. , 1993, Brain : a journal of neurology.
[44] H. Kita,et al. GABAergic circuits of the striatum. , 1993, Progress in brain research.
[45] K. Chowdhury,et al. Glutamate induces the growth factors NGF, bFGF, the receptor FGF-R1 and c-fos mRNA expression in rat astrocyte culture , 1993, Neuroscience Letters.
[46] B Kirschenbaum,et al. In vitro neuronal production and differentiation by precursor cells derived from the adult human forebrain. , 1994, Cerebral cortex.
[47] James P. O'Callaghan,et al. Brain injury in a dish: a model for reactive gliosis , 1994, Trends in Neurosciences.
[48] M. Cooperman,et al. Differential effects of chronic antipsychotic drug treatment on extracellular glutamate and dopamine concentrations , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[49] N. Nishiyama,et al. Neurotrophic factor gene expression in astrocytes during development and following injury , 1994, Brain Research Bulletin.
[50] Brent A. Reynolds,et al. Neural stem cells in the adult mammalian forebrain: A relatively quiescent subpopulation of subependymal cells , 1994, Neuron.
[51] S. Hersch,et al. The dopamine transporter: immunochemical characterization and localization in brain , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[52] S. Goldman,et al. Brain-derived neurotrophic factor promotes the survival of neurons arising from the adult rat forebrain subependymal zone. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[53] J. W. Francis,et al. Neuroglial responses to the dopaminergic neurotoxicant 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine in mouse striatum. , 1995, Neurotoxicology and teratology.
[54] L. Iacovitti,et al. Brain-derived neurotrophic factor works coordinately with partner molecules to initiate tyrosine hydroxylase expression in striatal neurons , 1995, Brain Research.
[55] P. Emson,et al. Localization of GAT-1 GABA transporter mRNA in rat striatum: cellular coexpression with GAD67 mRNA, GAD67 immunoreactivity, and parvalbumin mRNA , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[56] F. Gage,et al. FGF-2-Responsive Neuronal Progenitors Reside in Proliferative and Quiescent Regions of the Adult Rodent Brain , 1995, Molecular and Cellular Neuroscience.
[57] M. Tessier-Lavigne,et al. Control of neuronal diversity by the floor plate: Contact-mediated induction of midbrain dopaminergic neurons , 1995, Cell.
[58] X. Du,et al. Synergy between growth factors and transmitters required for catecholamine differentiation in brain neurons , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[59] André Parent,et al. Chemical anatomy of primate basal ganglia , 1995, Progress in Neurobiology.
[60] A. Bossio,et al. Co-expression of tyrosine hydroxylase and glutamic acid decarboxylase in dopamine differentiation factor-treated striatal neurons in culture. , 1996, Brain research. Developmental brain research.
[61] R. Roth,et al. Restoration of dopamine transporter density in the striatum of fetal ventral mesencephalon-grafted, but not sham-grafted, MPTP-treated parkinsonian monkeys. , 1996, Cell transplantation.
[62] B J Hoffer,et al. Dopamine neuron agenesis in Nurr1-deficient mice. , 1997, Science.
[63] D. Mash,et al. Immunochemical analysis of dopamine transporter protein in Parkinson's disease , 1997, Annals of neurology.
[64] O. Hornykiewicz,et al. Distribution of noradrenaline and dopamine (3-hydroxytyramine) in the human brain and their behavior in diseases of the extrapyramidal system. , 1960, Parkinsonism & related disorders.