The optically transparent larval zebrafish is ideally suited for in vivo analyses of neural circuitry controlling visually guided behaviors. However, there is a lack of information regarding specific cell types in the major retinorecipient brain region of the fish, the optic tectum. Here we report the characterization of three previously unidentified tectal cell types that are specifically labeled by dlx5/6 enhancer elements. In vivo laser scanning microscopy in conjunction with ex vivo array tomography revealed that these neurons differ in their morphologies, synaptic connectivity, and neurotransmitter phenotypes. The first type is an excitatory bistratified periventricular interneuron (bsPVIN) that forms a dendritic arbor in the retin...
The optic tectum is the main visual processing area in zebrafish and is involved in a variety of vis...
Abstract Background Neuronal connections are often arranged in layers, which are divided into sublam...
Histologically discrete, parallel layers occur frequently in the nervous system. In many cases, each...
The optically transparent larval zebrafish is ideally suited for in vivo analyses of neural circuitr...
The larval zebrafish optic tectum has emerged as a prominent model for understanding how neural circ...
We have carried out a Gal4 enhancer trap screen in zebrafish, and have generated 184 stable transgen...
We have carried out a Gal4 enhancer trap screen in zebrafish, and have generated 184 stable transgen...
SummaryThe visual pathway from the retina to the optic tectum in fish and frogs has long been studie...
The visual pathway is tasked with processing incoming signals from the retina and converting this in...
The superficial interneurons, SINs, of the zebrafish tectum, have been implicated in a range of visu...
The optic tectum of larval zebrafish is an important model for understanding visual processing in ve...
The superficial interneurons, SINs, of the zebrafish tectum, have been implicated in a range of visu...
The visual pathway is tasked with processing incoming signals from the retina and converting this in...
Background: Neuronal connections are often arranged in layers, which are divided into sublaminae har...
Abstract The visual pathway is tasked with processing incoming signals from the retina and convertin...
The optic tectum is the main visual processing area in zebrafish and is involved in a variety of vis...
Abstract Background Neuronal connections are often arranged in layers, which are divided into sublam...
Histologically discrete, parallel layers occur frequently in the nervous system. In many cases, each...
The optically transparent larval zebrafish is ideally suited for in vivo analyses of neural circuitr...
The larval zebrafish optic tectum has emerged as a prominent model for understanding how neural circ...
We have carried out a Gal4 enhancer trap screen in zebrafish, and have generated 184 stable transgen...
We have carried out a Gal4 enhancer trap screen in zebrafish, and have generated 184 stable transgen...
SummaryThe visual pathway from the retina to the optic tectum in fish and frogs has long been studie...
The visual pathway is tasked with processing incoming signals from the retina and converting this in...
The superficial interneurons, SINs, of the zebrafish tectum, have been implicated in a range of visu...
The optic tectum of larval zebrafish is an important model for understanding visual processing in ve...
The superficial interneurons, SINs, of the zebrafish tectum, have been implicated in a range of visu...
The visual pathway is tasked with processing incoming signals from the retina and converting this in...
Background: Neuronal connections are often arranged in layers, which are divided into sublaminae har...
Abstract The visual pathway is tasked with processing incoming signals from the retina and convertin...
The optic tectum is the main visual processing area in zebrafish and is involved in a variety of vis...
Abstract Background Neuronal connections are often arranged in layers, which are divided into sublam...
Histologically discrete, parallel layers occur frequently in the nervous system. In many cases, each...