Paul F. Kramer, PhD

2005-2009 Psychology Grinnell College, Grinnell, IA, United States 
 2009-2011 NIAAA National Institutes of Health, Bethesda, MD 
 2011-2016 Vollum Institute Oregon Health and Science University, Portland, OR 
 2017-2023 NINDS National Institutes of Health, Bethesda, MD 
 2023- Molecular, Cellular, and Developmental Biology University of Michigan, Ann Arbor, Ann Arbor, MI 
Cellular Neurophysiology
"Paul Kramer"
Mean distance: 106866 (cluster 6)


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Veronica A. Alvarez research assistant 2009- NIAAA
Nancy Rempel-Clower research assistant 2007-2009 Grinnell College
John T. Williams grad student 2011-2016 OHSU
Zayd M. Khaliq post-doc 2017-2023 NIH
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Kramer PF, Brill-Weil SG, Cummins AC, et al. (2022) Synaptic-like axo-axonal transmission from striatal cholinergic interneurons onto dopaminergic fibers. Neuron
Liu C, Cai X, Ritzau-Jost A, et al. (2022) An action potential initiation mechanism in distal axons for the control of dopamine release. Science (New York, N.Y.). 375: 1378-1385
Kramer PF, Twedell EL, Shin JH, et al. (2020) Axonal mechanisms mediating γ-aminobutyric acid receptor type A (GABA-A) inhibition of striatal dopamine release. Elife. 9
Kramer PF, Twedell EL, Shin JH, et al. (2020) Author response: Axonal mechanisms mediating γ-aminobutyric acid receptor type A (GABA-A) inhibition of striatal dopamine release Elife
Passlick S, Kramer PF, Richers MT, et al. (2017) Two-color, one-photon uncaging of glutamate and GABA. Plos One. 12: e0187732
Kramer PF, Williams JT. (2016) Calcium Release from Stores Inhibits GIRK. Cell Reports. 17: 3246-3255
Kramer PF, Williams JT. (2015) Cocaine Decreases Metabotropic Glutamate Receptor mGluR1 Currents in Dopamine Neurons by Activating mGluR5. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology
Bock R, Shin JH, Kaplan AR, et al. (2013) Strengthening the accumbal indirect pathway promotes resilience to compulsive cocaine use. Nature Neuroscience. 16: 632-8
Kramer PF, Christensen CH, Hazelwood LA, et al. (2011) Dopamine D2 receptor overexpression alters behavior and physiology in Drd2-EGFP mice. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 31: 126-32
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