Area of research
Cognitive Neuroscience · Molecular Biology
Research interest
Research interests include Retinal Development and Disorders, Neural dynamics and brain function, Photoreceptor and optogenetics research, and Visual perception and processing mechanisms.
Author Correction: Biophysical neural adaptation mechanisms enable artificial neural networks to capture dynamic retinal computation
Biophysical neural adaptation mechanisms enable artificial neural networks to capture dynamic retinal computation
Biophysical neural adaptation mechanisms enable artificial neural networks to capture dynamic retinal computation
A High-Density Narrow-Field Inhibitory Retinal Interneuron with Direct Coupling to Müller Glia
S-cone photoreceptors in the primate retina are functionally distinct from L and M cones
Inferring synaptic inputs from spikes with a conductance-based neural encoding model
Stimulus- and goal-oriented frameworks for understanding natural vision
Predicting how and when hidden neurons skew measured synaptic interactions
GABA release selectively regulates synapse development at distinct inputs on direction-selective retinal ganglion cells
Contrast-dependent red-green hue shift
Stimulation of functional neuronal regeneration from Müller glia in adult mice
Cellular and Circuit Mechanisms Shaping the Perceptual Properties of the Primate Fovea
Effective synaptic interactions in subsampled nonlinear networks with strong coupling
arXiv (Cornell University) 2017cited by 3position: middle
Predicting how and when hidden neurons skew measured synaptic interactions
Direction-Selective Circuits Shape Noise to Ensure a Precise Population Code
Nonlinear Spatiotemporal Integration by Electrical and Chemical Synapses in the Retina
Synaptic Rectification Controls Nonlinear Spatial Integration of Natural Visual Inputs
Glutamatergic Monopolar Interneurons Provide a Novel Pathway of Excitation in the Mouse Retina
How Do Efficient Coding Strategies Depend on Origins of Noise in Neural Circuits?
Lack of CaBP1/Caldendrin or CaBP2 Leads to Altered Ganglion Cell Responses
Brightness in human rod vision depends on slow neural adaptation to quantum statistics of light
Brightness in human rod vision depends on neural adaptation to the quantum statistics of light
C-terminal threonines and serines play distinct roles in the desensitization of rhodopsin, a G protein-coupled receptor
Broad Thorny Ganglion Cells: A Candidate for Visual Pursuit Error Signaling in the Primate Retina
Complex inhibitory microcircuitry regulates retinal signaling near visual threshold
Chromatic detection from cone photoreceptors to V1 neurons to behavior in rhesus monkeys
Neurotransmission plays contrasting roles in the maturation of inhibitory synapses on axons and dendrites of retinal bipolar cells
Distinctive receptive field and physiological properties of a wide-field amacrine cell in the macaque monkey retina
A simple retinal mechanism contributes to perceptual interactions between rod- and cone-mediated responses in primates
Limited range correlations, when modulated by firing rate, can substantially improve neural population coding