Coordinated changes in gene expression underlie the early patterning and cell-type specification of the central nervous system. However, much less is known about how such changes contribute to later stages of circuit assembly and refinement. In this study, we employ single-cell RNA sequencing to develop a detailed, whole-transcriptome resource of gene expression across four time points in the developing dorsal lateral geniculate nucleus (LGN), a visual structure in the brain that undergoes a well-characterized program of postnatal circuit development. This approach identifies markers defining the major LGN cell types, including excitatory relay neurons, oligodendrocytes, astrocytes, microglia, and endothelial cells. Most cell types exhibit ...
The development and connectivity of retinal ganglion cells (RGCs), the retina's sole output neurons,...
The assembly of neural circuits involves multiple sequential steps such as the specification of cell...
Brain structure and function experience dramatic changes from embryonic to postnatal development. Mi...
Coordinated changes in gene expression underlie the early patterning and cell-type specification of ...
The human brain is a tissue of vast complexity in terms of the cell types it comprises. Understandin...
We performed RNA sequencing on 40,000 cells to create a high-resolution single-cell gene expression ...
The superior colliculus (SC) is a sensorimotor structure in the midbrain that integrates input from ...
The mammalian brain develops through a complex interplay of spatial cues generated by diffusible mor...
The mammalian brain develops through a complex interplay of spatial cues generated by diffusible mor...
The mechanisms which govern cell fate acquisition in the central nervous system (CNS) are of immense...
In the developing cerebral cortex, how progenitors that seemingly display limited diversity end up i...
The generation and use of induced pluripotent stem cells (iPSCs) in order to obtain all differentiat...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
Proper neural circuit formation is crucial for brain function and animal behavior. How neurons form ...
Self-organizing cerebral organoids grown from pluripotent stem cells combined with single-cell genom...
The development and connectivity of retinal ganglion cells (RGCs), the retina's sole output neurons,...
The assembly of neural circuits involves multiple sequential steps such as the specification of cell...
Brain structure and function experience dramatic changes from embryonic to postnatal development. Mi...
Coordinated changes in gene expression underlie the early patterning and cell-type specification of ...
The human brain is a tissue of vast complexity in terms of the cell types it comprises. Understandin...
We performed RNA sequencing on 40,000 cells to create a high-resolution single-cell gene expression ...
The superior colliculus (SC) is a sensorimotor structure in the midbrain that integrates input from ...
The mammalian brain develops through a complex interplay of spatial cues generated by diffusible mor...
The mammalian brain develops through a complex interplay of spatial cues generated by diffusible mor...
The mechanisms which govern cell fate acquisition in the central nervous system (CNS) are of immense...
In the developing cerebral cortex, how progenitors that seemingly display limited diversity end up i...
The generation and use of induced pluripotent stem cells (iPSCs) in order to obtain all differentiat...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
Proper neural circuit formation is crucial for brain function and animal behavior. How neurons form ...
Self-organizing cerebral organoids grown from pluripotent stem cells combined with single-cell genom...
The development and connectivity of retinal ganglion cells (RGCs), the retina's sole output neurons,...
The assembly of neural circuits involves multiple sequential steps such as the specification of cell...
Brain structure and function experience dramatic changes from embryonic to postnatal development. Mi...