Synaptic Regulation of Action Potential Timing in Neostriatal Cholinergic Interneurons
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[1] A. Barbeau. The pathogenesis of Parkinson's disease: a new hypothesis. , 1962, Canadian Medical Association journal.
[2] S. T. Kitai,et al. Firing patterns and synaptic potentials of identified giant aspiny interneurons in the rat neostriatum , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[4] A. Graybiel,et al. Responses of tonically active neurons in the primate's striatum undergo systematic changes during behavioral sensorimotor conditioning , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[5] J. Bolam,et al. Input from the frontal cortex and the parafascicular nucleus to cholinergic interneurons in the dorsal striatum of the rat , 1992, Neuroscience.
[6] J. Lambert,et al. The slow inhibitory postsynaptic potential in rat hippocampal CA1 neurones is blocked by intracellular injection of QX-314 , 1990, Neuroscience Letters.
[7] D. Surmeier,et al. D5 Dopamine Receptors Enhance Zn2+-Sensitive GABAA Currents in Striatal Cholinergic Interneurons through a PKA/PP1 Cascade , 1997, Neuron.
[8] S. Young,et al. Ultrastructural examination of enkephalin and substance P input to cholinergic neurons within the rat neostriatum , 1992, Brain Research.
[9] K Watanabe,et al. Neural information transferred from the putamen to the globus pallidus during learned movement in the monkey. , 1996, Journal of neurophysiology.
[10] P. Mcgeer,et al. Drug-induced extrapyramidal reactions. Treatment with diphenhydramine hydrochloride and dihydroxyphenylalanine. , 1961, JAMA.
[11] Y. Kawaguchi,et al. Physiological, morphological, and histochemical characterization of three classes of interneurons in rat neostriatum , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[12] A. Graybiel,et al. Temporal and spatial characteristics of tonically active neurons of the primate's striatum. , 1995, Journal of neurophysiology.
[13] J. Lübke,et al. Functional Properties of AMPA and NMDA Receptors Expressed in Identified Types of Basal Ganglia Neurons , 1997, The Journal of Neuroscience.
[14] Do neurons from rat neostriatum express both a TTX-sensitive and a TTX-insensitive slow Na+ current? , 1995, Journal of neurophysiology.
[15] O. Hikosaka,et al. Functional properties of monkey caudate neurons. I. Activities related to saccadic eye movements. , 1989, Journal of neurophysiology.
[16] R. North,et al. Membrane properties and synaptic responses of rat striatal neurones in vitro. , 1991, The Journal of physiology.
[17] A. Reyes,et al. Two modes of interspike interval shortening by brief transient depolarizations in cat neocortical neurons. , 1993, Journal of neurophysiology.
[18] K. Horikawa,et al. A versatile means of intracellular labeling: injection of biocytin and its detection with avidin conjugates , 1988, Journal of Neuroscience Methods.
[19] Y. Kawaguchi,et al. Large aspiny cells in the matrix of the rat neostriatum in vitro: physiological identification, relation to the compartments and excitatory postsynaptic currents. , 1992, Journal of neurophysiology.
[20] A. Graybiel,et al. Effect of the nigrostriatal dopamine system on acquired neural responses in the striatum of behaving monkeys. , 1994, Science.
[21] Charles J. Wilson,et al. The generation of natural firing patterns in neostriatal neurons. , 1993, Progress in brain research.
[22] J. Surmeier,et al. D2 dopamine receptors reduce N-type Ca2+ currents in rat neostriatal cholinergic interneurons through a membrane-delimited, protein-kinase-C-insensitive pathway. , 1997, Journal of neurophysiology.
[23] J. E. Vaughn,et al. Immunocytochemical localization of choline acetyltransferase within the rat neostriatum: A correlated light and electron microscopic study of cholinergic neurons and synapses , 1985, The Journal of comparative neurology.
[24] D. Agard,et al. Fluorescence microscopy in three dimensions. , 1989, Methods in cell biology.
[25] 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.
[26] P. Greengard,et al. Modulation of calcium currents by a D1 dopaminergic protein kinase/phosphatase cascade in rat neostriatal neurons , 1995, Neuron.
[27] D. Plenz,et al. Neural dynamics in cortex-striatum co-cultures—I. Anatomy and electrophysiology of neuronal cell types , 1996, Neuroscience.
[28] A. D. Smith,et al. Substance P-Containing terminals in synaptic contact with cholinergic neurons in the neostriatum and basal forebrain: a double immunocytochemical study in the rat , 1986, Brain Research.
[29] M. Difiglia. Synaptic organization of cholinergic neurons in the monkey neostriatum , 1987, The Journal of comparative neurology.
[30] S Miyazaki,et al. Potassium current and the effect of cesium on this current during anomalous rectification of the egg cell membrane of a starfish , 1976, The Journal of general physiology.
[31] S. L. Liles. Activity of neurons in putamen during active and passive movements of wrist. , 1985, Journal of neurophysiology.
[32] C. Wilson,et al. Intracellular recording of identified neostriatal patch and matrix spiny cells in a slice preparation preserving cortical inputs. , 1989, Journal of neurophysiology.
[33] T. Freund,et al. Cholinergic synapses in the rat brain: a correlated light and electron microscopic immunohistochemical study employing a monoclonal antibody against choline acetyltransferase , 1984, Brain Research.
[34] Y. Kawaguchi,et al. Actions of Substance P on Rat Neostriatal Neurons In Vitro , 1996, The Journal of Neuroscience.
[35] R. French,et al. Blocking of the squid axon potassium channel by external caesium ions. , 1978, The Journal of physiology.
[36] J. Bargas,et al. Dopamine modulates the afterhyperpolarization in neostriatal neurones , 1996, Neuroreport.
[37] A M Graybiel,et al. The basal ganglia and adaptive motor control. , 1994, Science.
[38] Y. Kubota,et al. Neostriatal cholinergic neurons receive direct synaptic inputs from dopaminergic axons , 1987, Brain Research.
[39] J. Rajkowski,et al. Tonically discharging putamen neurons exhibit set-dependent responses. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[40] Peter Dayan,et al. A Neural Substrate of Prediction and Reward , 1997, Science.
[41] Y. Kawaguchi,et al. Dopamine D1-Like Receptor Activation Excites Rat Striatal Large Aspiny Neurons In Vitro , 1998, The Journal of Neuroscience.