The human brain has enormously complex cellular diversity and connectivities fundamental to our neural functions, yet difficulties in interrogating individual neurons has impeded understanding of the underlying transcriptional landscape. We developed a scalable approach to sequence and quantify RNA molecules in isolated neuronal nuclei from a postmortem brain, generating 3227 sets of single-neuron data from six distinct regions of the cerebral cortex. Using an iterative clustering and classification approach, we identified 16 neuronal subtypes that were further annotated on the basis of known markers and cortical cytoarchitecture. These data demonstrate a robust and scalable method for identifying and categorizing single nuclear transcripto...
Single-nucleus RNA sequencing (sNuc-seq) profiles RNA from tissues that are preserved or cannot be d...
In neurons, local translation in dendritic and axonal compartments allows for the fast and on-demand...
Neuroanatomically precise, genome-wide maps of transcript distributions are critical resources to co...
Transcriptomic profiling of complex tissues by single-nucleus RNA-sequencing (snRNA-seq) affords som...
Transcriptomic profiling of complex tissues by single-nucleus RNA-sequencing (snRNA-seq) affords som...
Recent technical advances have enabled transcriptomics experiments at an unprecedented scale, and si...
Single-nucleus RNA sequencing (sNuc-seq) profiles RNA from tissues that are preserved or cannot be d...
Abstract Single-cell RNA-sequencing (scRNA-seq) is revolutionizing our understanding of the genomic,...
BackgroundWe used RNA sequencing to analyze transcript profiles of ten autopsy brain regions from te...
Single-cell sequencing technologies, including transcriptomic and epigenomic assays, are transformin...
Abstract The mammalian central nervous system (CNS) is one of the most complex systems, with thousan...
The human brain can be organized using various different layers of information about the cells: epig...
Single-nuclei RNA sequencing characterizes cell types at the gene level. However, compared to single...
Detailed characterization of the cell types in the human brain requires scalable experimental approa...
Detailed characterization of the cell types in the human brain requires scalable experimental approa...
Single-nucleus RNA sequencing (sNuc-seq) profiles RNA from tissues that are preserved or cannot be d...
In neurons, local translation in dendritic and axonal compartments allows for the fast and on-demand...
Neuroanatomically precise, genome-wide maps of transcript distributions are critical resources to co...
Transcriptomic profiling of complex tissues by single-nucleus RNA-sequencing (snRNA-seq) affords som...
Transcriptomic profiling of complex tissues by single-nucleus RNA-sequencing (snRNA-seq) affords som...
Recent technical advances have enabled transcriptomics experiments at an unprecedented scale, and si...
Single-nucleus RNA sequencing (sNuc-seq) profiles RNA from tissues that are preserved or cannot be d...
Abstract Single-cell RNA-sequencing (scRNA-seq) is revolutionizing our understanding of the genomic,...
BackgroundWe used RNA sequencing to analyze transcript profiles of ten autopsy brain regions from te...
Single-cell sequencing technologies, including transcriptomic and epigenomic assays, are transformin...
Abstract The mammalian central nervous system (CNS) is one of the most complex systems, with thousan...
The human brain can be organized using various different layers of information about the cells: epig...
Single-nuclei RNA sequencing characterizes cell types at the gene level. However, compared to single...
Detailed characterization of the cell types in the human brain requires scalable experimental approa...
Detailed characterization of the cell types in the human brain requires scalable experimental approa...
Single-nucleus RNA sequencing (sNuc-seq) profiles RNA from tissues that are preserved or cannot be d...
In neurons, local translation in dendritic and axonal compartments allows for the fast and on-demand...
Neuroanatomically precise, genome-wide maps of transcript distributions are critical resources to co...