Samuel William Johnson

Yale University, New Haven, CT 
Agricultural chemistry
"Samuel Johnson"

(1830 - 1909)

Mean distance: 9.9


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Otto Linné Erdmann research assistant 1853-1855 University of Leipzig
Justus Von Liebig research assistant 1853-1855 Ludwig-Maximilians-Universität München
John Pitkin Norton research assistant 1857 Yale


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Wilbur O. Atwater grad student 1869 Yale
Oscar Dana Allen grad student 1871 Yale
Russell Henry Chittenden grad student 1880 Yale
Thomas Burr Osborne research scientist 1886 Yale
BETA: Related publications


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Wu YN, Johnson SW. (2011) Dopamine oxidation facilitates rotenone-dependent potentiation of N-methyl-D-aspartate currents in rat substantia nigra dopamine neurons. Neuroscience. 195: 138-44
Wu YN, Munhall AC, Johnson SW. (2011) Mitochondrial uncoupling agents antagonize rotenone actions in rat substantia nigra dopamine neurons. Brain Research. 1395: 86-93
Shen KZ, Johnson SW. (2010) Ca2+ influx through NMDA-gated channels activates ATP-sensitive K+ currents through a nitric oxide-cGMP pathway in subthalamic neurons. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 30: 1882-93
Paquette MA, Anderson AM, Lewis JR, et al. (2010) MK-801 inhibits L-DOPA-induced abnormal involuntary movements only at doses that worsen parkinsonism. Neuropharmacology. 58: 1002-8
Wu YN, Johnson SW. (2009) Rotenone reduces Mg2+-dependent block of NMDA currents in substantia nigra dopamine neurons. Neurotoxicology. 30: 320-5
Paquette MA, Foley K, Brudney EG, et al. (2009) The sigma-1 antagonist BMY-14802 inhibits L-DOPA-induced abnormal involuntary movements by a WAY-100635-sensitive mechanism. Psychopharmacology. 204: 743-54
Johnson SW. (2008) Rebound bursts following inhibition: how dopamine modifies firing pattern in subthalamic neurons. The Journal of Physiology. 586: 2033
Paquette MA, Brudney EG, Putterman DB, et al. (2008) Sigma ligands, but not N-methyl-D-aspartate antagonists, reduce levodopa-induced dyskinesias. Neuroreport. 19: 111-5
Shen KZ, Johnson SW. (2008) 5-HT inhibits synaptic transmission in rat subthalamic nucleus neurons in vitro. Neuroscience. 151: 1029-33
Shen KZ, Johnson SW. (2008) Complex EPSCs evoked in substantia nigra reticulata neurons are disrupted by repetitive stimulation of the subthalamic nucleus. Synapse (New York, N.Y.). 62: 237-42
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