Throughout the visual system, different subtypes of neurons are tuned to distinct aspects of the visual scene, establishing parallel circuits. Defining the mechanisms by which such tuning arises has been a long-standing challenge for neuroscience. To investigate this, we have focused on the retina’s projection to the superior colliculus (SC), where multiple visual neuron subtypes have been described. The SC receives inputs from a variety of retinal ganglion cell (RGC) subtypes; however, which RGCs drive the tuning of different SC neurons remains unclear. Here, we pursued a genetic approach that allowed us to determine the tuning properties of neurons innervated by molecularly defined subpopulations of RGCs. In homozygous Islet2-EphA3 knock-...
The superior colliculus is a layered structure important for body- and gaze-orienting responses. Its...
The mouse retina contains dozens of different cell types, each specialized for a particular aspect o...
Retinal ganglion cells (RGCs) represent the output computations of the visual world. In the mouse, t...
BackgroundThere are numerous functional types of retinal ganglion cells (RGCs), each participating i...
The superior colliculus (SC) integrates visual and other sensory information to regulate critical re...
Visual neurons in the superior colliculus (SC) respond to both bright (On) and dark (off) stimuli in...
Using sensory information to trigger different behaviors relies on circuits that pass through brain ...
More than twenty types of retinal ganglion cells conduct visual information from the eye to the rest...
AbstractPathfinding of retinal ganglion cell (RGC) axons at the midline optic chiasm determines whet...
The superior colliculus is a layered structure important for a diverse set of sensory guided orienti...
Sensory neurons often display an ordered spatial arrangement that enhances the encoding of specific ...
Sensory neurons often display an ordered spatial arrangement that enhances the encoding of specific ...
Retinal ganglion cells (RGCs) project axons from their cell bodies in the eye to targets in the supe...
The superior colliculus is a critical brain region involved in processing visual information. It rec...
The mouse brain contains over 70 million neurons that form around a trillion connections, or synapse...
The superior colliculus is a layered structure important for body- and gaze-orienting responses. Its...
The mouse retina contains dozens of different cell types, each specialized for a particular aspect o...
Retinal ganglion cells (RGCs) represent the output computations of the visual world. In the mouse, t...
BackgroundThere are numerous functional types of retinal ganglion cells (RGCs), each participating i...
The superior colliculus (SC) integrates visual and other sensory information to regulate critical re...
Visual neurons in the superior colliculus (SC) respond to both bright (On) and dark (off) stimuli in...
Using sensory information to trigger different behaviors relies on circuits that pass through brain ...
More than twenty types of retinal ganglion cells conduct visual information from the eye to the rest...
AbstractPathfinding of retinal ganglion cell (RGC) axons at the midline optic chiasm determines whet...
The superior colliculus is a layered structure important for a diverse set of sensory guided orienti...
Sensory neurons often display an ordered spatial arrangement that enhances the encoding of specific ...
Sensory neurons often display an ordered spatial arrangement that enhances the encoding of specific ...
Retinal ganglion cells (RGCs) project axons from their cell bodies in the eye to targets in the supe...
The superior colliculus is a critical brain region involved in processing visual information. It rec...
The mouse brain contains over 70 million neurons that form around a trillion connections, or synapse...
The superior colliculus is a layered structure important for body- and gaze-orienting responses. Its...
The mouse retina contains dozens of different cell types, each specialized for a particular aspect o...
Retinal ganglion cells (RGCs) represent the output computations of the visual world. In the mouse, t...