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P D Shepard

Showing results (1-10 of 24) with videos related to

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The Journal of Pharmacology and Experimental Therapeutics|May 1, 1992
(+-)-1-hydroxy-3-aminopyrrolidone-2 (HA-966) inhibits the activity of substantia nigra dopamine neurons through a non-N-methyl-D-aspartate receptor-mediated mechanismP D Shepard, H Lehmann
Neuroscience|March 28, 2006
SK Ca2+-activated K+ channel ligands alter the firing pattern of dopamine-containing neurons in vivoH Ji, P D Shepard
Brain Research|January 16, 1999
Nifedipine blocks apamin-induced bursting activity in nigral dopamine-containing neuronsP D Shepard, D Stump
Journal of Neurophysiology|March 23, 1999
Blockade of SK-type Ca2+-activated K+ channels uncovers a Ca2+-dependent slow afterdepolarization in nigral dopamine neuronsH X Ping, P D Shepard
Neuroscience|November 1, 1988
Electrophysiological and pharmacological evidence for the existence of distinct subpopulations of nigrostriatal dopaminergic neuron in the ratP D Shepard, D C German
Brain Research|November 1, 1988
Effects of apamin on the discharge properties of putative dopamine-containing neurons in vitroP D Shepard, B S Bunney
Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology|October 12, 1999
Pertussis toxin lesions of the rat substantia nigra block the inhibitory effects of the gamma-hydroxybutyrate agent, S(-)HA-966 without affecting the basal firing properties of dopamine neuronsP D Shepard, S T Connelly
Journal of Neural Transmission. Supplementum|April 24, 2010
Chaotic versus stochastic dynamics: a critical look at the evidence for nonlinear sequence dependent structure in dopamine neuronsC C Canavier, P D Shepard
Experimental Brain Research|January 1, 1991
Repetitive firing properties of putative dopamine-containing neurons in vitro: regulation by an apamin-sensitive Ca(2+)-activated K+ conductanceP D Shepard, B S Bunney
Neuroreport|February 29, 1996
Apamin-sensitive Ca(2+)-activated K+ channels regulate pacemaker activity in nigral dopamine neuronsH X Ping, P D Shepard
Pageof 3

Showing results (1-10 of 24) with videos related to

Sort By:
Pageof 3
The Journal of Pharmacology and Experimental Therapeutics|May 1, 1992
(+-)-1-hydroxy-3-aminopyrrolidone-2 (HA-966) inhibits the activity of substantia nigra dopamine neurons through a non-N-methyl-D-aspartate receptor-mediated mechanismP D Shepard, H Lehmann
Neuroscience|March 28, 2006
SK Ca2+-activated K+ channel ligands alter the firing pattern of dopamine-containing neurons in vivoH Ji, P D Shepard
Brain Research|January 16, 1999
Nifedipine blocks apamin-induced bursting activity in nigral dopamine-containing neuronsP D Shepard, D Stump
Journal of Neurophysiology|March 23, 1999
Blockade of SK-type Ca2+-activated K+ channels uncovers a Ca2+-dependent slow afterdepolarization in nigral dopamine neuronsH X Ping, P D Shepard
Neuroscience|November 1, 1988
Electrophysiological and pharmacological evidence for the existence of distinct subpopulations of nigrostriatal dopaminergic neuron in the ratP D Shepard, D C German
Brain Research|November 1, 1988
Effects of apamin on the discharge properties of putative dopamine-containing neurons in vitroP D Shepard, B S Bunney
Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology|October 12, 1999
Pertussis toxin lesions of the rat substantia nigra block the inhibitory effects of the gamma-hydroxybutyrate agent, S(-)HA-966 without affecting the basal firing properties of dopamine neuronsP D Shepard, S T Connelly
Journal of Neural Transmission. Supplementum|April 24, 2010
Chaotic versus stochastic dynamics: a critical look at the evidence for nonlinear sequence dependent structure in dopamine neuronsC C Canavier, P D Shepard
Experimental Brain Research|January 1, 1991
Repetitive firing properties of putative dopamine-containing neurons in vitro: regulation by an apamin-sensitive Ca(2+)-activated K+ conductanceP D Shepard, B S Bunney
Neuroreport|February 29, 1996
Apamin-sensitive Ca(2+)-activated K+ channels regulate pacemaker activity in nigral dopamine neuronsH X Ping, P D Shepard
Pageof 3