Christopher M. Davenport

University of California, Berkeley, Berkeley, CA, United States 
"Christopher Davenport"
Mean distance: 13.12 (cluster 6)


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Paul Brehm research assistant 1997-1998 SUNY Stony Brook
Gail Mandel research assistant 1997-1998 SUNY Stony Brook
David D. Ginty research assistant 1998-2000 Johns Hopkins
Michael W. Salter grad student University of Toronto
Dennis M. Dacey grad student 2002-2007 University of Washington
Peter B. Detwiler grad student 2002-2007 University of Washington
 (Neural circuitry of retinal receptive fields in primate.)
Richard H. Kramer post-doc 2009- UC Berkeley
Dan Feldman post-doc 2007-2008 UCSD
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Davenport CM, Rajappa R, Katchan L, et al. (2020) Relocation of an Extrasynaptic GABA Receptor to Inhibitory Synapses Freezes Excitatory Synaptic Strength and Preserves Memory. Neuron
Kramer RH, Davenport CM. (2015) Lateral Inhibition in the Vertebrate Retina: The Case of the Missing Neurotransmitter. Plos Biology. 13: e1002322
Lin WC, Tsai MC, Davenport CM, et al. (2015) A Comprehensive Optogenetic Pharmacology Toolkit for In Vivo Control of GABAA Receptors and Synaptic Inhibition. Neuron
Lin WC, Davenport CM, Mourot A, et al. (2014) Engineering a light-regulated GABAA receptor for optical control of neural inhibition. Acs Chemical Biology. 9: 1414-9
Lin W, Tsai M, Davenport CM, et al. (2014) Light-Regulated GABAA Receptors: An Optogenetic Toolset for Studying Neural Inhibition Biophysical Journal. 106: 381a-382a
Donato L, Mourot A, Davenport CM, et al. (2012) Water-soluble, donor-acceptor biphenyl derivatives in the 2-(o-nitrophenyl)propyl series: highly efficient two-photon uncaging of the neurotransmitter γ-aminobutyric acid at λ = 800 nm. Angewandte Chemie (International Ed. in English). 51: 1840-3
Davenport CM, Lin W, Mourot A, et al. (2012) Optical Control of Neuronal Inhibition with Genetically Engineered Light Inhibited GABAA Receptors (Li-GABARs) Biophysical Journal. 102: 111a
Fourgeaud L, Davenport CM, Tyler CM, et al. (2010) MHC class I modulates NMDA receptor function and AMPA receptor trafficking. Proceedings of the National Academy of Sciences of the United States of America. 107: 22278-83
Crook JD, Davenport CM, Peterson BB, et al. (2009) Parallel ON and OFF cone bipolar inputs establish spatially coextensive receptive field structure of blue-yellow ganglion cells in primate retina. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 29: 8372-87
Davenport CM, Detwiler PB, Dacey DM. (2008) Effects of pH buffering on horizontal and ganglion cell light responses in primate retina: evidence for the proton hypothesis of surround formation. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 28: 456-64
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