SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are incompletely characterized. We show that microfluidic and FACS-based single-cell RNA sequencing of mouse striatum provides a well-resolved classification of striatal cell type diversity. Transcriptome analysis revealed ten differentiated, distinct cell types, including neurons, astrocytes, oligodendrocytes, ependymal, immune, and vascular cells, and enabled the discovery of numerous marker genes. Furthermore, we identified two discrete subtypes of medium spiny neurons (MSNs) that have specific markers and that overexpress genes linked to cognitive disorders and addiction. We also describe continuous cellular identities, which increase heterogen...
The advent and recent advances of single-cell RNA sequencing (scRNA-seq) have yielded transformative...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
The striatum contributes to many cognitive processes and disorders, but its cell types are incomplet...
SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are in...
The mammalian cerebral cortex supports cognitive functions such as sensorimotor integration, memory,...
The mammalian nervous system is arguably the most intricate system known to science. At its basis l...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
The human brain is a tissue of vast complexity in terms of the cell types it comprises. Understandin...
To understand the function of the brain and how its dysfunction leads to brain diseases, it is essen...
Dendritic and axonal morphology reflects the input and output of neurons and is a defining feature o...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
Abstract Single-cell RNA-sequencing (scRNA-seq) is revolutionizing our understanding of the genomic,...
The development of the mammalian cerebral cortex depends on careful orchestration of proliferation, ...
Abstract The mammalian central nervous system (CNS) is one of the most complex systems, with thousan...
The advent and recent advances of single-cell RNA sequencing (scRNA-seq) have yielded transformative...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
The striatum contributes to many cognitive processes and disorders, but its cell types are incomplet...
SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are in...
The mammalian cerebral cortex supports cognitive functions such as sensorimotor integration, memory,...
The mammalian nervous system is arguably the most intricate system known to science. At its basis l...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
The human brain is a tissue of vast complexity in terms of the cell types it comprises. Understandin...
To understand the function of the brain and how its dysfunction leads to brain diseases, it is essen...
Dendritic and axonal morphology reflects the input and output of neurons and is a defining feature o...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
Abstract Single-cell RNA-sequencing (scRNA-seq) is revolutionizing our understanding of the genomic,...
The development of the mammalian cerebral cortex depends on careful orchestration of proliferation, ...
Abstract The mammalian central nervous system (CNS) is one of the most complex systems, with thousan...
The advent and recent advances of single-cell RNA sequencing (scRNA-seq) have yielded transformative...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...