Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
5R01EY002048-26
Application #
6723729
Study Section
Visual Sciences C Study Section (VISC)
Program Officer
Mariani, Andrew P
Project Start
1977-09-01
Project End
2006-03-31
Budget Start
2004-04-01
Budget End
2005-03-31
Support Year
26
Fiscal Year
2004
Total Cost
$262,880
Indirect Cost
Name
University of Washington
Department
Physiology
Type
Schools of Medicine
DUNS #
605799469
City
Seattle
State
WA
Country
United States
Zip Code
98195
Newkirk, G S; Hoon, M; Wong, R O et al. (2015) Response Properties of a Newly Identified Tristratified Narrow Field Amacrine Cell in the Mouse Retina. PLoS One 10:e0137702
Margolis, David J; Gartland, Andrew J; Singer, Joshua H et al. (2014) Network oscillations drive correlated spiking of ON and OFF ganglion cells in the rd1 mouse model of retinal degeneration. PLoS One 9:e86253
Newkirk, G S; Hoon, M; Wong, R O et al. (2013) Inhibitory inputs tune the light response properties of dopaminergic amacrine cells in mouse retina. J Neurophysiol 110:536-52
Theer, Patrick; Denk, Winfried; Sheves, Mordechai et al. (2011) Second-harmonic generation imaging of membrane potential with retinal analogues. Biophys J 100:232-42
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Euler, Thomas; Hausselt, Susanne E; Margolis, David J et al. (2009) Eyecup scope--optical recordings of light stimulus-evoked fluorescence signals in the retina. Pflugers Arch 457:1393-414
Crook, Joanna D; Davenport, Christopher M; Peterson, Beth B et al. (2009) Parallel ON and OFF cone bipolar inputs establish spatially coextensive receptive field structure of blue-yellow ganglion cells in primate retina. J Neurosci 29:8372-87
Margolis, David J; Newkirk, Gregory; Euler, Thomas et al. (2008) Functional stability of retinal ganglion cells after degeneration-induced changes in synaptic input. J Neurosci 28:6526-36
Davenport, Christopher M; Detwiler, Peter B; Dacey, Dennis M (2008) Effects of pH buffering on horizontal and ganglion cell light responses in primate retina: evidence for the proton hypothesis of surround formation. J Neurosci 28:456-64

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