Through adaptation, animals can function visually under an extremely broad range of light intensities. Light adaptation starts in the retina, through shifts in photoreceptor sensitivity and kinetics plus modulation of visual processing in retinal circuits. Although considerable research has been conducted on retinal adaptation in nocturnal species with rod-dominated retinas, such as the mouse, little is known about how cone-dominated avian retinas adapt to changes in mean light intensity.We used the optokinetic response to characterize contrast sensitivity (CS) in the chick retina as a function of spatial frequency and temporal frequency at different mean light intensities. We found that: 1) daytime, cone-driven CS was tuned to spatial freq...
To date, most studies involving in vivo electroretinography in mice are performed on steady state ad...
A number of daily rhythms were investigated under different lighting conditions and the topographica...
SummaryPhotoreceptive, melanopsin-expressing retinal ganglion cells (mRGCs) encode ambient light (ir...
Background: Through adaptation, animals can function visually under an extremely broad range of ligh...
Through adaptation, animals can function visually under an extremely broad range of light intensitie...
Circadian clocks predictively adjust the physiology of organisms to the day/night cycle. The retina ...
BackgroundThe mammalian eye shows marked adaptations to time of day. Some of these modifications are...
The time-course of dark adaptation provides valuable insights into the function and interactions bet...
Summary Background In bright light, mammals use a distinct photopigment (melanopsin) to measure irra...
Rod and cone photoreceptors support vision across large light intensity ranges. Rods, active under d...
SummaryBackgroundIn bright light, mammals use a distinct photopigment (melanopsin) to measure irradi...
AbstractExperiments in animal models have shown that the retina analyzes the image to identify the p...
Environmental illuminance can vary in intensity by up to 11 log units. The retina must adapt to thes...
Light exerts widespread effects on physiology and behaviour. As well as the widely-appreciated role ...
Purpose: In the mammalian retina, rod and cone pathways are fundamentally intertwined, with signals ...
To date, most studies involving in vivo electroretinography in mice are performed on steady state ad...
A number of daily rhythms were investigated under different lighting conditions and the topographica...
SummaryPhotoreceptive, melanopsin-expressing retinal ganglion cells (mRGCs) encode ambient light (ir...
Background: Through adaptation, animals can function visually under an extremely broad range of ligh...
Through adaptation, animals can function visually under an extremely broad range of light intensitie...
Circadian clocks predictively adjust the physiology of organisms to the day/night cycle. The retina ...
BackgroundThe mammalian eye shows marked adaptations to time of day. Some of these modifications are...
The time-course of dark adaptation provides valuable insights into the function and interactions bet...
Summary Background In bright light, mammals use a distinct photopigment (melanopsin) to measure irra...
Rod and cone photoreceptors support vision across large light intensity ranges. Rods, active under d...
SummaryBackgroundIn bright light, mammals use a distinct photopigment (melanopsin) to measure irradi...
AbstractExperiments in animal models have shown that the retina analyzes the image to identify the p...
Environmental illuminance can vary in intensity by up to 11 log units. The retina must adapt to thes...
Light exerts widespread effects on physiology and behaviour. As well as the widely-appreciated role ...
Purpose: In the mammalian retina, rod and cone pathways are fundamentally intertwined, with signals ...
To date, most studies involving in vivo electroretinography in mice are performed on steady state ad...
A number of daily rhythms were investigated under different lighting conditions and the topographica...
SummaryPhotoreceptive, melanopsin-expressing retinal ganglion cells (mRGCs) encode ambient light (ir...