Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
5R01EY004888-10
Application #
2159195
Study Section
Special Emphasis Panel (ZRG1-VISB (07))
Project Start
1984-09-01
Project End
1995-02-28
Budget Start
1994-12-01
Budget End
1995-02-28
Support Year
10
Fiscal Year
1995
Total Cost
Indirect Cost
Name
Rockefeller University
Department
Physiology
Type
Other Domestic Higher Education
DUNS #
071037113
City
New York
State
NY
Country
United States
Zip Code
10065
Ozaki, T; Kaplan, Ehud (2006) Brainstem input modulates globally the transmission through the lateral geniculate nucleus. Int J Neurosci 116:247-64
Benardete, E A; Kaplan, E (1999) The dynamics of primate M retinal ganglion cells. Vis Neurosci 16:355-68
Benardete, E A; Kaplan, E (1999) Dynamics of primate P retinal ganglion cells: responses to chromatic and achromatic stimuli. J Physiol 519 Pt 3:775-90
Mukherjee, P; Kaplan, E (1998) The maintained discharge of neurons in the cat lateral geniculate nucleus: spectral analysis and computational modeling. Vis Neurosci 15:529-39
Benardete, E A; Kaplan, E (1997) The receptive field of the primate P retinal ganglion cell, II: Nonlinear dynamics. Vis Neurosci 14:187-205
Teich, M C; Heneghan, C; Lowen, S B et al. (1997) Fractal character of the neural spike train in the visual system of the cat. J Opt Soc Am A Opt Image Sci Vis 14:529-46
Benardete, E A; Kaplan, E (1997) The receptive field of the primate P retinal ganglion cell, I: Linear dynamics. Vis Neurosci 14:169-85
Reich, D S; Victor, J D; Knight, B W et al. (1997) Response variability and timing precision of neuronal spike trains in vivo. J Neurophysiol 77:2836-41
Levine, M W; Cleland, B G; Mukherjee, P et al. (1996) Tailoring of variability in the lateral geniculate nucleus of the cat. Biol Cybern 75:219-27
Mukherjee, P; Kaplan, E (1995) Dynamics of neurons in the cat lateral geniculate nucleus: in vivo electrophysiology and computational modeling. J Neurophysiol 74:1222-43

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