SummaryVisual information is conveyed to the brain by axons of >30 retinal ganglion cell (RGC) types. Characterization of these types is a prerequisite to understanding visual perception. Here, we identify a family of RGCs that we call F-RGCs on the basis of expression of the transcription factor Foxp2. Intersectional expression of Foxp1 and Brn3 transcription factors divides F-RGCs into four types, comprising two pairs, each composed of closely related cells. One pair, F-miniON and F-miniOFF, shows robust direction selectivity. They are among the smallest RGCs in the mouse retina. The other pair, F-midiON and F-midiOFF, is larger and not direction selective. Together, F-RGCs comprise >20% of RGCs in the mouse retina, halving the number tha...
The mammalian retina extracts a multitude of diverse features from the visual scene such as color, c...
The retina contains ganglion cells (RGCs) that respond selectively to objects moving in particular d...
The retina contains complex circuits of neurons that extract salient information from visual inputs....
SummaryVisual information is conveyed to the brain by axons of >30 retinal ganglion cell (RGC) types...
Visual information is conveyed to the brain by axons of >30 retinal ganglion cell (RGC) types. Chara...
AbstractThe mammalian retina contains more than 50 distinct neuronal types, which are broadly classi...
Visual information is conveyed from the retina to the brain through axons of retinal ganglion cells ...
Recent studies estimate that there are at least 30 different types of retinal ganglion cell in the m...
The retina transforms visual sensation into perception. Extracted visual features are encoded by ret...
The retina is a remarkable piece of neural tissue, providing the gateway through which all visual in...
SummaryTranscriptional regulatory networks that control the morphologic and functional diversity of ...
The mammalian retina harbors over 100 different cell types. To understand how retinal circuits work,...
The retina extracts relevant features from the visual scene and transmits these features to the brai...
AbstractProgenitor cells in the mammalian retina generate at least 55 distinct kinds of neurons. Two...
The retina reports the visual scene to the brain through many parallel channels, each carried by a d...
The mammalian retina extracts a multitude of diverse features from the visual scene such as color, c...
The retina contains ganglion cells (RGCs) that respond selectively to objects moving in particular d...
The retina contains complex circuits of neurons that extract salient information from visual inputs....
SummaryVisual information is conveyed to the brain by axons of >30 retinal ganglion cell (RGC) types...
Visual information is conveyed to the brain by axons of >30 retinal ganglion cell (RGC) types. Chara...
AbstractThe mammalian retina contains more than 50 distinct neuronal types, which are broadly classi...
Visual information is conveyed from the retina to the brain through axons of retinal ganglion cells ...
Recent studies estimate that there are at least 30 different types of retinal ganglion cell in the m...
The retina transforms visual sensation into perception. Extracted visual features are encoded by ret...
The retina is a remarkable piece of neural tissue, providing the gateway through which all visual in...
SummaryTranscriptional regulatory networks that control the morphologic and functional diversity of ...
The mammalian retina harbors over 100 different cell types. To understand how retinal circuits work,...
The retina extracts relevant features from the visual scene and transmits these features to the brai...
AbstractProgenitor cells in the mammalian retina generate at least 55 distinct kinds of neurons. Two...
The retina reports the visual scene to the brain through many parallel channels, each carried by a d...
The mammalian retina extracts a multitude of diverse features from the visual scene such as color, c...
The retina contains ganglion cells (RGCs) that respond selectively to objects moving in particular d...
The retina contains complex circuits of neurons that extract salient information from visual inputs....