To understand the cellular basis of behavior, it is necessary to know the cell types that exist in the nervous system and their contributions to function. Spinal networks are essential for sensory processing and motor behavior and provide a powerful system for identifying the cellular correlates of behavior. Here, we used massively parallel single nucleus RNA sequencing (snRNA-seq) to create an atlas of the adult mouse lumbar spinal cord. We identified and molecularly characterized 43 neuronal populations. Next, we leveraged the snRNA-seq approach to provide unbiased identification of neuronal populations that were active following a sensory and a motor behavior, using a transcriptional signature of neuronal activity. This approach can be u...
SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are in...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
The classification of neurons into distinct types is an ongoing effort aimed at revealing and unders...
The mammalian spinal cord functions as a community of glial and neuronal cell types to accomplish se...
Advancements in single-cell RNA-Sequencing (scRNA-Seq) have allowed for the characterization of indi...
The mammalian brain contains numerous neurons distributed across forebrain, midbrain, and hindbrain ...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
In the field of neuroscience microarray gene expression profiles on anatomically defined brain struc...
Single-cell RNA sequencing data can unveil the molecular diversity of cell types. Cell type atlases ...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
After spinal cord injury, tissue distal to the lesion contains undamaged cells that could support or...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
Neuronal activity-dependent transcription directs molecular processes that regulate synaptic plastic...
Understanding the molecular basis of cellular identity in the central nervous system (CNS) is essent...
The neural stem cell capacity of the spinal cord is contained within the ependymal cell population. ...
SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are in...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
The classification of neurons into distinct types is an ongoing effort aimed at revealing and unders...
The mammalian spinal cord functions as a community of glial and neuronal cell types to accomplish se...
Advancements in single-cell RNA-Sequencing (scRNA-Seq) have allowed for the characterization of indi...
The mammalian brain contains numerous neurons distributed across forebrain, midbrain, and hindbrain ...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
In the field of neuroscience microarray gene expression profiles on anatomically defined brain struc...
Single-cell RNA sequencing data can unveil the molecular diversity of cell types. Cell type atlases ...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
After spinal cord injury, tissue distal to the lesion contains undamaged cells that could support or...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
Neuronal activity-dependent transcription directs molecular processes that regulate synaptic plastic...
Understanding the molecular basis of cellular identity in the central nervous system (CNS) is essent...
The neural stem cell capacity of the spinal cord is contained within the ependymal cell population. ...
SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are in...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
The classification of neurons into distinct types is an ongoing effort aimed at revealing and unders...