Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Method to Extend Research in Time (MERIT) Award (R37)
Project #
5R37EY004440-15
Application #
2159069
Study Section
Visual Sciences B Study Section (VISB)
Project Start
1982-07-01
Project End
1997-06-30
Budget Start
1996-07-01
Budget End
1997-06-30
Support Year
15
Fiscal Year
1996
Total Cost
Indirect Cost
Name
University of Rochester
Department
Miscellaneous
Type
Schools of Arts and Sciences
DUNS #
208469486
City
Rochester
State
NY
Country
United States
Zip Code
14627
Goris, Robbe L T; Ziemba, Corey M; Movshon, J Anthony et al. (2018) Slow gain fluctuations limit benefits of temporal integration in visual cortex. J Vis 18:8
Goris, Robbe L T; Ziemba, Corey M; Stine, Gabriel M et al. (2017) Dissociation of Choice Formation and Choice-Correlated Activity in Macaque Visual Cortex. J Neurosci 37:5195-5203
Goris, Robbe L T; Simoncelli, Eero P; Movshon, J Anthony (2015) Origin and Function of Tuning Diversity in Macaque Visual Cortex. Neuron 88:819-31
Vintch, Brett; Movshon, J Anthony; Simoncelli, Eero P (2015) A Convolutional Subunit Model for Neuronal Responses in Macaque V1. J Neurosci 35:14829-41
Kumbhani, Romesh D; El-Shamayleh, Yasmine; Movshon, J Anthony (2015) Temporal and spatial limits of pattern motion sensitivity in macaque MT neurons. J Neurophysiol 113:1977-88
Hallum, Luke E; Movshon, J Anthony (2014) Surround suppression supports second-order feature encoding by macaque V1 and V2 neurons. Vision Res 104:24-35
Goris, Robbe L T; Movshon, J Anthony; Simoncelli, Eero P (2014) Partitioning neuronal variability. Nat Neurosci 17:858-65
Freeman, Jeremy; Ziemba, Corey M; Heeger, David J et al. (2013) A functional and perceptual signature of the second visual area in primates. Nat Neurosci 16:974-81
El-Shamayleh, Yasmine; Kumbhani, Romesh D; Dhruv, Neel T et al. (2013) Visual response properties of V1 neurons projecting to V2 in macaque. J Neurosci 33:16594-605
Vintch, Brett; Zaharia, Andrew D; Movshon, J Anthony et al. (2012) Efficient and direct estimation of a neural subunit model for sensory coding. Adv Neural Inf Process Syst 25:3113-3121

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