Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Method to Extend Research in Time (MERIT) Award (R37)
Project #
5R37EY003014-20
Application #
2158601
Study Section
Special Emphasis Panel (NSS)
Project Start
1978-09-30
Project End
1999-02-28
Budget Start
1996-03-01
Budget End
1997-02-28
Support Year
20
Fiscal Year
1996
Total Cost
Indirect Cost
Name
University of Minnesota Twin Cities
Department
Physiology
Type
Schools of Medicine
DUNS #
168559177
City
Minneapolis
State
MN
Country
United States
Zip Code
55455
Sullivan, Steve J; Miller, Robert F (2012) AMPA receptor-dependent, light-evoked D-serine release acts on retinal ganglion cell NMDA receptors. J Neurophysiol 108:1044-51
Sullivan, Steve J; Miller, Robert F (2010) AMPA receptor mediated D-serine release from retinal glial cells. J Neurochem 115:1681-9
Stevens, Eric R; Gustafson, Eric C; Sullivan, Steven J et al. (2010) Light-evoked NMDA receptor-mediated currents are reduced by blocking D-serine synthesis in the salamander retina. Neuroreport 21:239-44
Mitra, Pratip; Miller, Robert F (2007) Mechanism underlying rebound excitation in retinal ganglion cells. Vis Neurosci 24:709-31
Royer, Audrey S; Miller, Robert F (2007) Dendritic impulse collisions and shifting sites of action potential initiation contract and extend the receptive field of an amacrine cell. Vis Neurosci 24:619-34
Gustafson, Eric C; Stevens, Eric R; Wolosker, Herman et al. (2007) Endogenous D-serine contributes to NMDA-receptor-mediated light-evoked responses in the vertebrate retina. J Neurophysiol 98:122-30
Henderson, Dori; Miller, Robert F (2007) Low-voltage activated calcium currents in ganglion cells of the tiger salamander retina: experiment and simulation. Vis Neurosci 24:37-51
Mitra, Pratip; Miller, Robert F (2007) Normal and rebound impulse firing in retinal ganglion cells. Vis Neurosci 24:79-90
Miller, Robert F; Staff, Nathan P; Velte, Toby J (2006) Form and function of ON-OFF amacrine cells in the amphibian retina. J Neurophysiol 95:3171-90
O'Brien, Kylie B; Miller, Robert F; Bowser, Michael T (2005) D-Serine uptake by isolated retinas is consistent with ASCT-mediated transport. Neurosci Lett 385:58-63

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