Synchronized spontaneous firing among retinal ganglion cells (RGCs), on timescales faster than visual responses, has been reported in many studies. Two candidate mechanisms of synchronized firing include direct coupling and shared noisy inputs. In neighboring parasol cells of primate retina, which exhibit rapid synchronized firing that has been studied extensively, recent experimental work indicates that direct electrical or synaptic coupling is weak, but shared synaptic input in the absence of modulated stimuli is strong. However, previous modeling efforts have not accounted for this aspect of firing in the parasol cell population. Here we develop a new model that incorporates the effects of common noise, and apply it to analyze the light ...
Population codes in the brain have generally been characterized by recording responses from one neur...
AbstractIn the early visual system, neuronal responses can be extremely precise. Under a wide range ...
Across the nervous system, certain population spiking patterns are observed far more frequently than...
Synchronized spontaneous firing among retinal ganglion cells (RGCs), on timescales faster than visua...
Cells throughout the central nervous system exhibit synchronous activity patterns- i.e. a cell’s pro...
Abstract-The retina’s visual message is transmitted to the brain by ganglion cells that integrate no...
A physiologically plausible neural net, simulating ganglion cell signals in the primate retina was s...
A major goal in neuroscience is to understand how populations of neurons code for stimuli or actions...
We recorded intracellular responses from cat retinal ganglion cells to sinusoidal flickering lights ...
We recorded intracellular responses from cat retinal ganglion cells to sinusoidal flickering lights,...
AbstractNearby retinal ganglion cells often fire action potentials in near synchrony. We have invest...
AbstractPopulation codes in the brain have generally been characterized by recording responses from ...
AbstractPopulation codes in the brain have generally been characterized by recording responses from ...
We recorded intracellular responses from cat retinal ganglion cells to sinusoidal flickering lights,...
Population codes in the brain have generally been characterized by recording responses from one neur...
Population codes in the brain have generally been characterized by recording responses from one neur...
AbstractIn the early visual system, neuronal responses can be extremely precise. Under a wide range ...
Across the nervous system, certain population spiking patterns are observed far more frequently than...
Synchronized spontaneous firing among retinal ganglion cells (RGCs), on timescales faster than visua...
Cells throughout the central nervous system exhibit synchronous activity patterns- i.e. a cell’s pro...
Abstract-The retina’s visual message is transmitted to the brain by ganglion cells that integrate no...
A physiologically plausible neural net, simulating ganglion cell signals in the primate retina was s...
A major goal in neuroscience is to understand how populations of neurons code for stimuli or actions...
We recorded intracellular responses from cat retinal ganglion cells to sinusoidal flickering lights ...
We recorded intracellular responses from cat retinal ganglion cells to sinusoidal flickering lights,...
AbstractNearby retinal ganglion cells often fire action potentials in near synchrony. We have invest...
AbstractPopulation codes in the brain have generally been characterized by recording responses from ...
AbstractPopulation codes in the brain have generally been characterized by recording responses from ...
We recorded intracellular responses from cat retinal ganglion cells to sinusoidal flickering lights,...
Population codes in the brain have generally been characterized by recording responses from one neur...
Population codes in the brain have generally been characterized by recording responses from one neur...
AbstractIn the early visual system, neuronal responses can be extremely precise. Under a wide range ...
Across the nervous system, certain population spiking patterns are observed far more frequently than...