Retinal ganglion cells are commonly classified as On-center or Off-center depending on whether they are excited predominantly by brightening or dimming within the receptive field. Here we report that many ganglion cells in the salamander retina can switch from one response type to the other, depending on stimulus events far from the receptive field. Specifically, a shift of the peripheral image—as produced by a rapid eye movement—causes a brief transition in visual sensitivity from Off-type to On-type for approximately 100 ms. We show that these ganglion cells receive inputs from both On and Off bipolar cells, and the Off inputs are normally dominant. The peripheral shift strongly modulates the strength of these two inputs in opposite direc...
The visual system adapts to the magnitude of intensity fluctuations, and this process begins in the ...
AbstractIn immunocytochemical studies of the tiger salamander retina, 17% of neurons in the outer nu...
Intracellular recordings were made from off-center ganglion cells in the retina of the mudpuppy. Nec...
Retinal ganglion cells are commonly classified as On-center or Off-center depending on whether they ...
Retinal ganglion cells are commonly classified as On-center or Off-center depending on whether they ...
To make up for delays in visual processing, retinal circuitry effectively predicts that a moving obj...
<p>Response modulation by the peripheral grating shift is illustrated for three sample ganglion cell...
AbstractIt has been widely accepted that ON and OFF channels in the visual system are segregated wit...
The postsynaptic potentials (PSPs) that form the ganglion cell light response were isolated by polar...
<div><p>(A and B) Two possible circuits underlying On-type responses of ganglion cell, involving pho...
Bipolar cells form parallel channels that carry visual signals from the outer to the inner retina. E...
Retinal ganglion cells react to changes in visual contrast by adjusting their sensitivity and tempor...
AbstractThe visual system adapts to the magnitude of intensity fluctuations, and this process begins...
Retinal ganglion cells react to changes in visual contrast by adjusting their sensitivity and tempor...
SummaryThe receptive field of a sensory neuron spells out all the receptor inputs it receives. To un...
The visual system adapts to the magnitude of intensity fluctuations, and this process begins in the ...
AbstractIn immunocytochemical studies of the tiger salamander retina, 17% of neurons in the outer nu...
Intracellular recordings were made from off-center ganglion cells in the retina of the mudpuppy. Nec...
Retinal ganglion cells are commonly classified as On-center or Off-center depending on whether they ...
Retinal ganglion cells are commonly classified as On-center or Off-center depending on whether they ...
To make up for delays in visual processing, retinal circuitry effectively predicts that a moving obj...
<p>Response modulation by the peripheral grating shift is illustrated for three sample ganglion cell...
AbstractIt has been widely accepted that ON and OFF channels in the visual system are segregated wit...
The postsynaptic potentials (PSPs) that form the ganglion cell light response were isolated by polar...
<div><p>(A and B) Two possible circuits underlying On-type responses of ganglion cell, involving pho...
Bipolar cells form parallel channels that carry visual signals from the outer to the inner retina. E...
Retinal ganglion cells react to changes in visual contrast by adjusting their sensitivity and tempor...
AbstractThe visual system adapts to the magnitude of intensity fluctuations, and this process begins...
Retinal ganglion cells react to changes in visual contrast by adjusting their sensitivity and tempor...
SummaryThe receptive field of a sensory neuron spells out all the receptor inputs it receives. To un...
The visual system adapts to the magnitude of intensity fluctuations, and this process begins in the ...
AbstractIn immunocytochemical studies of the tiger salamander retina, 17% of neurons in the outer nu...
Intracellular recordings were made from off-center ganglion cells in the retina of the mudpuppy. Nec...