Neuromodulators adapt sensory circuits to changes in the external world or the animal’s internal state and synapses are key control sites for such plasticity. Less clear is how neuromodulation alters the amount of information transmitted through the circuit. We investigated this question in the context of the diurnal regulation of visual processing in the retina of zebrafish, focusing on ribbon synapses of bipolar cells. We demonstrate that contrast-sensitivity peaks in the afternoon accompanied by a four-fold increase in the average Shannon information transmitted from an active zone. This increase reflects higher synaptic gain, lower spontaneous “noise” and reduced variability of evoked responses. Simultaneously, an increase in the probab...
To transmit information efficiently in a changing environment, the retina adapts to visual contrast ...
Sensory receptive fields combine features that originate in different neural pathways. Retinal gangl...
Sensory stimuli fluctuate on many timescales. However, short-term plasticity causes synapses to act ...
Neuromodulators adapt sensory circuits to changes in the external world or the animal’s internal sta...
The visual system transmits information about fast and slow changes in light intensity through separ...
Most neurons transmit information digitally using spikes that trigger the release of synaptic vesicl...
SummaryUnderstanding how neural circuits transmit information is technically challenging because the...
Understanding how neural circuits transmit information is technically challenging because the neural...
Sensory systems continually adjust the way stimuli are processed. What are the circuit mechanisms un...
Retinal networks must adapt constantly to best present the ever changing visual world to the brain. ...
The visual system transmits information about fast and slow changes in light intensity through separ...
Ribbon synapses transmit information in sensory systems, but their development is not well understoo...
Because of the limited processing capacity of eyes, retinal networks must adapt constantly to best p...
AbstractThe retinogeniculate synapse conveys visual information from the retina to thalamic relay ne...
Circadian clocks predictively adjust the physiology of organisms to the day/night cycle. The retina ...
To transmit information efficiently in a changing environment, the retina adapts to visual contrast ...
Sensory receptive fields combine features that originate in different neural pathways. Retinal gangl...
Sensory stimuli fluctuate on many timescales. However, short-term plasticity causes synapses to act ...
Neuromodulators adapt sensory circuits to changes in the external world or the animal’s internal sta...
The visual system transmits information about fast and slow changes in light intensity through separ...
Most neurons transmit information digitally using spikes that trigger the release of synaptic vesicl...
SummaryUnderstanding how neural circuits transmit information is technically challenging because the...
Understanding how neural circuits transmit information is technically challenging because the neural...
Sensory systems continually adjust the way stimuli are processed. What are the circuit mechanisms un...
Retinal networks must adapt constantly to best present the ever changing visual world to the brain. ...
The visual system transmits information about fast and slow changes in light intensity through separ...
Ribbon synapses transmit information in sensory systems, but their development is not well understoo...
Because of the limited processing capacity of eyes, retinal networks must adapt constantly to best p...
AbstractThe retinogeniculate synapse conveys visual information from the retina to thalamic relay ne...
Circadian clocks predictively adjust the physiology of organisms to the day/night cycle. The retina ...
To transmit information efficiently in a changing environment, the retina adapts to visual contrast ...
Sensory receptive fields combine features that originate in different neural pathways. Retinal gangl...
Sensory stimuli fluctuate on many timescales. However, short-term plasticity causes synapses to act ...