In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an essential step in contrast enhancement. For the last decades, the mechanism involved in this inhibitory synaptic pathway has been a major controversy in retinal research. One hypothesis suggests that connexin hemichannels mediate this negative feedback signal; another suggests that feedback is mediated by protons. Mutant zebrafish were generated that lack connexin 55.5 hemichannels in horizontal cells. Whole cell voltage clamp recordings were made from isolated horizontal cells and cones in flat mount retinas. Light-induced feedback from horizontal cells to cones was reduced in mutants. A reduction of feedback was also found when horizontal cell...
In neuronal systems, excitation and inhibition must be well balanced to ensure reliable information ...
In neuronal systems, excitation and inhibition must be well balanced to ensure reliable information ...
In neuronal systems, excitation and inhibition must be well balanced to ensure reliable information ...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
Retinal horizontal cells (HCs) feed back negatively to cone photoreceptors and in that way generate ...
Background: Recent studies designed to identify the mechanism by which retinal horizontal cells comm...
In the vertebrate retina, cones project to the horizontal cells (HCs) and bipolar cells (BCs). The c...
Background: Recent studies designed to identify the mechanism by which retinal horizontal cells comm...
In neuronal systems, excitation and inhibition must be well balanced to ensure reliable information ...
In neuronal systems, excitation and inhibition must be well balanced to ensure reliable information ...
In neuronal systems, excitation and inhibition must be well balanced to ensure reliable information ...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
In the vertebrate retina, horizontal cells generate the inhibitory surround of bipolar cells, an ess...
Retinal horizontal cells (HCs) feed back negatively to cone photoreceptors and in that way generate ...
Background: Recent studies designed to identify the mechanism by which retinal horizontal cells comm...
In the vertebrate retina, cones project to the horizontal cells (HCs) and bipolar cells (BCs). The c...
Background: Recent studies designed to identify the mechanism by which retinal horizontal cells comm...
In neuronal systems, excitation and inhibition must be well balanced to ensure reliable information ...
In neuronal systems, excitation and inhibition must be well balanced to ensure reliable information ...
In neuronal systems, excitation and inhibition must be well balanced to ensure reliable information ...