[[abstract]]Inputs from starburst amacrine cells (SACs) to ON-OFF direction selective ganglion cells (DSGCs) in the rabbit retina are themselves directional. However, the synaptic asymmetry between SACs and DSGCs required for generating direction selectivity has been controversial. We investigated dendritic contacts and distribution of inhibitory synapses between SACs and their overlapped DSGCs. Double injection of SAC/DSGC pairs and quantitative analysis revealed no obvious asymmetry of dendritic contacts between SACs and DSGCs. Furthermore, examination of the inhibitory input pattern on the dendrites of DSGCs using antibodies against GABA, receptors also suggested an isotropic arrangement with the overlapping SACs in both the preferred an...
<div><p>Far from being a simple sensor, the retina actively participates in processing visual signal...
Detection of image motion direction begins in the retina, with starburst amacrine cells (SACs) playi...
The neuronal circuitry underlying the generation of direction selectivity in the retina has remained...
Neural circuits rely upon a precise wiring of their component neurons to perform meaningful computat...
Displaced starburst amacrine cells (SACs) are retinal interneurons that exhibit GABAA receptor-media...
The synaptic conductance of the On-Off direction-selective ganglion cells was measured during visual...
The dendrites of starburst amacrine cells (SACs) in the mammalian retina are preferentially activate...
Far from being a simple sensor, the retina actively participates in processing visual signals. One o...
SummaryThe excitatory and inhibitory inputs to directionally selective (DS) ganglion cells are thems...
Direction-selective retinal ganglion cells (DSGCs) respond to image motion in a 'preferred' directio...
Far from being a simple sensor, the retina actively participates in processing visual signals. One o...
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 ...
Detection of image motion direction begins in the retina, with starburst amacrine cells (SACs) playi...
Starburst amacrine cell (SAC) morphology is considered central to retinal direction selectivity. In ...
<div><p>Far from being a simple sensor, the retina actively participates in processing visual signal...
Detection of image motion direction begins in the retina, with starburst amacrine cells (SACs) playi...
The neuronal circuitry underlying the generation of direction selectivity in the retina has remained...
Neural circuits rely upon a precise wiring of their component neurons to perform meaningful computat...
Displaced starburst amacrine cells (SACs) are retinal interneurons that exhibit GABAA receptor-media...
The synaptic conductance of the On-Off direction-selective ganglion cells was measured during visual...
The dendrites of starburst amacrine cells (SACs) in the mammalian retina are preferentially activate...
Far from being a simple sensor, the retina actively participates in processing visual signals. One o...
SummaryThe excitatory and inhibitory inputs to directionally selective (DS) ganglion cells are thems...
Direction-selective retinal ganglion cells (DSGCs) respond to image motion in a 'preferred' directio...
Far from being a simple sensor, the retina actively participates in processing visual signals. One o...
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 ...
Detection of image motion direction begins in the retina, with starburst amacrine cells (SACs) playi...
Starburst amacrine cell (SAC) morphology is considered central to retinal direction selectivity. In ...
<div><p>Far from being a simple sensor, the retina actively participates in processing visual signal...
Detection of image motion direction begins in the retina, with starburst amacrine cells (SACs) playi...
The neuronal circuitry underlying the generation of direction selectivity in the retina has remained...