Abstract Background High throughput methods for profiling the transcriptomes of single cells have recently emerged as transformative approaches for large-scale population surveys of cellular diversity in heterogeneous primary tissues. However, the efficient generation of such atlases will depend on sufficient sampling of diverse cell types while remaining cost-effective to enable a comprehensive examination of organs, developmental stages, and individuals. Results To examine the relationship between sampled cell numbers and transcriptional heterogeneity in the context of unbiased cell type classification, we explored the population structure of a publicly available 1.3 million cell dataset from E18.5 mouse brain and validated our findings i...
How intrinsic gene-regulatory networks interact with a cell's spatial environment to define its iden...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
Humans are complex organisms, comprised of many tissues, which are comprised of different cell types...
BackgroundHigh throughput methods for profiling the transcriptomes of single cells have recently eme...
To understand the function of the brain and how its dysfunction leads to brain diseases, it is essen...
Spatially charting molecular cell types at single-cell resolution across the three-dimensional (3D) ...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
Summary: Recent progress in single-cell technologies has enabled the identification of all major cel...
The advent of increasingly sophisticated imaging platforms has allowed for the visualization of the ...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
Single cell transcriptomics has transformed the characterization of brain cell identity by providing...
Establishing the molecular diversity of cell types is crucial for the study of the nervous system. I...
SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are in...
The striatum contributes to many cognitive processes and disorders, but its cell types are incomplet...
Single-cell gene expression levels show substantial variations among cells in seemingly homogenous p...
How intrinsic gene-regulatory networks interact with a cell's spatial environment to define its iden...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
Humans are complex organisms, comprised of many tissues, which are comprised of different cell types...
BackgroundHigh throughput methods for profiling the transcriptomes of single cells have recently eme...
To understand the function of the brain and how its dysfunction leads to brain diseases, it is essen...
Spatially charting molecular cell types at single-cell resolution across the three-dimensional (3D) ...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
Summary: Recent progress in single-cell technologies has enabled the identification of all major cel...
The advent of increasingly sophisticated imaging platforms has allowed for the visualization of the ...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
Single cell transcriptomics has transformed the characterization of brain cell identity by providing...
Establishing the molecular diversity of cell types is crucial for the study of the nervous system. I...
SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are in...
The striatum contributes to many cognitive processes and disorders, but its cell types are incomplet...
Single-cell gene expression levels show substantial variations among cells in seemingly homogenous p...
How intrinsic gene-regulatory networks interact with a cell's spatial environment to define its iden...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
Humans are complex organisms, comprised of many tissues, which are comprised of different cell types...