Neural computation relies on the integration of synaptic inputs across a neuron’s dendritic arbour. However, it is far from understood how different cell types tune this process to establish cell-type specific computations. Here, using two-photon imaging of dendritic Ca2+ signals, electrical recordings of somatic voltage and biophysical modelling, we demonstrate that four morphologically distinct types of mouse retinal ganglion cells with overlapping excitatory synaptic input (transient Off alpha, transient Off mini, sustained Off, and F-mini Off) exhibit type-specific dendritic integration profiles: in contrast to the other types, dendrites of transient Off alpha cells were spatially independent, with little receptive field overlap. The te...
The retina communicates with the brain using ≥30 parallel channels, each carried by axons of distinc...
Pyramidal neurons in the mouse neocortex develop elaborate dendritic compartments that integrate sig...
It is now clear that electrical coupling via gap junctions is prevalent across the retina, expressed...
SummaryTo integrate information from different presynaptic cell types, dendrites receive distinct pa...
AbstractIn Brn3b−/− mice, where 80% of retinal ganglion cells degenerate early in development, the r...
SummaryTo integrate information from different presynaptic cell types, dendrites receive distinct pa...
Retinal neurons with distinct dendritic morphologies are likely to comprise different cell types, su...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
The retina contains ganglion cells (RGCs) that respond selectively to objects moving in particular d...
Summary: Dendrites in many neurons actively compute information. In retinal starburst amacrine cells...
Retinal ganglion cells (RGCs) represent the output computations of the visual world. In the mouse, t...
The electrical properties of the different anatomical types of retinal ganglion cells in the cat wer...
The retina communicates with the brain using ≥30 parallel channels, each carried by axons of distinc...
Pyramidal neurons in the mouse neocortex develop elaborate dendritic compartments that integrate sig...
It is now clear that electrical coupling via gap junctions is prevalent across the retina, expressed...
SummaryTo integrate information from different presynaptic cell types, dendrites receive distinct pa...
AbstractIn Brn3b−/− mice, where 80% of retinal ganglion cells degenerate early in development, the r...
SummaryTo integrate information from different presynaptic cell types, dendrites receive distinct pa...
Retinal neurons with distinct dendritic morphologies are likely to comprise different cell types, su...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
Retinal ganglion cells (RGCs) are the output cells of the retina; they convert synaptic input into s...
The retina contains ganglion cells (RGCs) that respond selectively to objects moving in particular d...
Summary: Dendrites in many neurons actively compute information. In retinal starburst amacrine cells...
Retinal ganglion cells (RGCs) represent the output computations of the visual world. In the mouse, t...
The electrical properties of the different anatomical types of retinal ganglion cells in the cat wer...
The retina communicates with the brain using ≥30 parallel channels, each carried by axons of distinc...
Pyramidal neurons in the mouse neocortex develop elaborate dendritic compartments that integrate sig...
It is now clear that electrical coupling via gap junctions is prevalent across the retina, expressed...