The retinal ganglion cells (RGCs) relay the output of each parallel feature detecting channel established through complex interactions in the retinas two synaptic layers to higher visual centres. Understanding how the visual scenery is encoded by the outputs of the 20 RGC types will thus yield a complete picture of the representation of the visual scene available to the brain. To reliably record from each RGC type in the mouse retina, we bulk-electroporated the tissue with a synthetic calcium indicator (OGB-1) and used two-photon calcium imaging to record light stimulus-evoked activity at the level of the ganglion cell layer (GCL) (Briggman Euler, J Neurophysiol 2011). So far, our database contains recordings of >10,000 cells from the GCL. ...
Sensory stimuli are encoded by diverse kinds of neurons but the identities of the recorded neurons t...
The retina reports the visual scene to the brain through many parallel channels, each carried by a d...
In the retina, the stream of incoming visual information is split into multiple parallel information...
The retinal ganglion cells (RGCs) relay the output of each parallel feature detecting channel – esta...
In the retina, the stream of incoming visual information is split into multiple parallel channels, f...
In the vertebrate visual system, all output of the retina is carried by retinal ganglion cells. Each...
Right at the first synapse, the stream of incoming visual information is split into multiple paralle...
Right at the first synapse in the mammalian retina, the stream of incoming visual information is spl...
In the vertebrate visual system, all output of the retina is carried by retinal ganglion cells. Each...
The retina is a remarkable piece of neural tissue, providing the gateway through which all visual in...
The retina extracts relevant features from the visual scene and transmits these features to the brai...
Classification and characterization of neuronal types are critical for understanding their function ...
The retina communicates with the brain using ≥30 parallel channels, each carried by axons of distinc...
The vertebrate retina, with its exquisitely regular organisation and its planar, near transparent st...
The retina communicates with the brain using ≥30 parallel channels, each carried by axons of distinc...
Sensory stimuli are encoded by diverse kinds of neurons but the identities of the recorded neurons t...
The retina reports the visual scene to the brain through many parallel channels, each carried by a d...
In the retina, the stream of incoming visual information is split into multiple parallel information...
The retinal ganglion cells (RGCs) relay the output of each parallel feature detecting channel – esta...
In the retina, the stream of incoming visual information is split into multiple parallel channels, f...
In the vertebrate visual system, all output of the retina is carried by retinal ganglion cells. Each...
Right at the first synapse, the stream of incoming visual information is split into multiple paralle...
Right at the first synapse in the mammalian retina, the stream of incoming visual information is spl...
In the vertebrate visual system, all output of the retina is carried by retinal ganglion cells. Each...
The retina is a remarkable piece of neural tissue, providing the gateway through which all visual in...
The retina extracts relevant features from the visual scene and transmits these features to the brai...
Classification and characterization of neuronal types are critical for understanding their function ...
The retina communicates with the brain using ≥30 parallel channels, each carried by axons of distinc...
The vertebrate retina, with its exquisitely regular organisation and its planar, near transparent st...
The retina communicates with the brain using ≥30 parallel channels, each carried by axons of distinc...
Sensory stimuli are encoded by diverse kinds of neurons but the identities of the recorded neurons t...
The retina reports the visual scene to the brain through many parallel channels, each carried by a d...
In the retina, the stream of incoming visual information is split into multiple parallel information...