The proper connectivity between neurons is essential for the implementation of the algorithms used in neural computations, such as the detection of directed motion by the retina. The analysis of neuronal connectivity is possible with electron microscopy, but technological limitations have impeded the acquisition of high−resolution data on a large enough scale. Here we show, using serial block−face electron microscopy and two−photon calcium imaging, that the dendrites of mouse starburst amacrine cells make highly specific synapses with direction−selective ganglion cells depending on the ganglion cell's preferred direction. Our findings indicate that a structural (wiring) asymmetry contributes to the computation of direction selectivity. The ...
Detection of image motion direction begins in the retina, with starburst amacrine cells (SACs) playi...
Presentation Description : Directionally tuned signalling in starburst amacrine cell (SAC) dendrites...
SummaryIn the retina, presynaptic inhibitory mechanisms that shape directionally selective (DS) resp...
The proper connectivity between neurons is essential for the implementation of the algorithms used i...
The proper connectivity between neurons is essential for the implementation of the algorithms used i...
The mouse brain contains over 70 million neurons that form around a trillion connections, or synapse...
Retinal ganglion cells (RGCs) represent the output computations of the visual world. In the mouse, t...
Neuronal circuits in the retina analyze images according to qualitative aspects such as color or mot...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Brain and Cognitive Sciences, J...
The starburst amacrine cell in the mouse retina presents an opportunity to examine the precise role ...
Throughout the nervous system, the organization of excitatory and inhibitory synaptic inputs within ...
Spatial asymmetries in neural connectivity have an important role in creating basic building blocks ...
The neuronal circuitry underlying the generation of direction selectivity in the retina has remained...
The mouse retina contains dozens of different cell types, each specialized for a particular aspect o...
Neural circuits rely upon a precise wiring of their component neurons to perform meaningful computat...
Detection of image motion direction begins in the retina, with starburst amacrine cells (SACs) playi...
Presentation Description : Directionally tuned signalling in starburst amacrine cell (SAC) dendrites...
SummaryIn the retina, presynaptic inhibitory mechanisms that shape directionally selective (DS) resp...
The proper connectivity between neurons is essential for the implementation of the algorithms used i...
The proper connectivity between neurons is essential for the implementation of the algorithms used i...
The mouse brain contains over 70 million neurons that form around a trillion connections, or synapse...
Retinal ganglion cells (RGCs) represent the output computations of the visual world. In the mouse, t...
Neuronal circuits in the retina analyze images according to qualitative aspects such as color or mot...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Brain and Cognitive Sciences, J...
The starburst amacrine cell in the mouse retina presents an opportunity to examine the precise role ...
Throughout the nervous system, the organization of excitatory and inhibitory synaptic inputs within ...
Spatial asymmetries in neural connectivity have an important role in creating basic building blocks ...
The neuronal circuitry underlying the generation of direction selectivity in the retina has remained...
The mouse retina contains dozens of different cell types, each specialized for a particular aspect o...
Neural circuits rely upon a precise wiring of their component neurons to perform meaningful computat...
Detection of image motion direction begins in the retina, with starburst amacrine cells (SACs) playi...
Presentation Description : Directionally tuned signalling in starburst amacrine cell (SAC) dendrites...
SummaryIn the retina, presynaptic inhibitory mechanisms that shape directionally selective (DS) resp...