AbstractNearby retinal ganglion cells often fire action potentials in near synchrony. We have investigated the circuit mechanisms that underlie these correlations by recording simultaneously from many ganglion cells in the salamander retina. During spontaneous activity in darkness, three types of correlations were distinguished: broad (firing synchrony within 40–100 ms), medium (10–50 ms), and narrow (<1 ms). When chemical synaptic transmission was blocked, the broad correlations disappeared, but the medium and narrow correlations persisted. Further analysis of the strength and time course of synchronous firing suggests that nearby ganglion cells share inputs from photoreceptors conveyed through interneurons via chemical synapses (broad cor...
SummaryWe have explored the manner in which the population of retinal ganglion cells collectively re...
SummaryPatterns of coordinated spontaneous activity have been proposed to guide circuit refinement i...
Neurons throughout the brain show spike activity that is temporally correlated to that expressed by ...
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 ...
SummaryPatterns of coordinated spontaneous activity have been proposed to guide circuit refinement i...
Retinal ganglion cells often fire impulses in synchrony; is this synchronization an irrelevant by-pr...
Cells throughout the central nervous system exhibit synchronous activity patterns- i.e. a cell’s pro...
A physiologically plausible neural net, simulating ganglion cell signals in the primate retina was s...
AbstractRetinal ganglion cells exhibit oscillatory responses which are precisely synchronized over l...
AbstractPopulation codes in the brain have generally been characterized by recording responses from ...
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...
Bipolar cells form parallel channels that carry visual signals from the outer to the inner retina. E...
Bipolar cells form parallel channels that carry visual signals from the outer to the inner retina. E...
SummaryWe have explored the manner in which the population of retinal ganglion cells collectively re...
SummaryPatterns of coordinated spontaneous activity have been proposed to guide circuit refinement i...
Neurons throughout the brain show spike activity that is temporally correlated to that expressed by ...
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 ...
SummaryPatterns of coordinated spontaneous activity have been proposed to guide circuit refinement i...
Retinal ganglion cells often fire impulses in synchrony; is this synchronization an irrelevant by-pr...
Cells throughout the central nervous system exhibit synchronous activity patterns- i.e. a cell’s pro...
A physiologically plausible neural net, simulating ganglion cell signals in the primate retina was s...
AbstractRetinal ganglion cells exhibit oscillatory responses which are precisely synchronized over l...
AbstractPopulation codes in the brain have generally been characterized by recording responses from ...
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...
Bipolar cells form parallel channels that carry visual signals from the outer to the inner retina. E...
Bipolar cells form parallel channels that carry visual signals from the outer to the inner retina. E...
SummaryWe have explored the manner in which the population of retinal ganglion cells collectively re...
SummaryPatterns of coordinated spontaneous activity have been proposed to guide circuit refinement i...
Neurons throughout the brain show spike activity that is temporally correlated to that expressed by ...