Spatially charting molecular cell types at single-cell resolution across the three-dimensional (3D) volume of the brain is critical for illustrating the molecular basis of the brain anatomy and functions. Single-cell RNA sequencing (scRNA-seq) has profiled molecular cell types in the mouse brain, but cannot capture their spatial organization. Here, we employed an in situ sequencing technique, STARmap PLUS, to map 1.09 million high-quality cells across the whole adult mouse brain and the spinal cord, profiling 1,022 genes at subcellular resolution with a voxel size of 194 X 194 X 345 nm3 in 3D. We developed computational pipelines to segment, cluster, and annotate 230 molecular cell types by single-cell gene expression and 106 molecular tiss...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Despite vast numbers of studies of stained cells in the mouse brain, no current brain atlas provides...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
Spatially charting molecular cell types at single-cell resolution across the three-dimensional (3D) ...
Spatially charting molecular cell types at single-cell resolution across the three-dimensional (3D) ...
Brain maps are essential for integrating information and interpreting the structure-function relatio...
Brain maps are essential for integrating information and interpreting the structure-function relatio...
Brain maps are essential for integrating information and interpreting the structure-function relatio...
To understand the function of the brain and how its dysfunction leads to brain diseases, it is essen...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
Spatial gene expression profiles provide a novel means of exploring the structural organization of t...
Background Neuroanatomical compartments of the mouse brain are identified and outlined mainly based ...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Background Neuroanatomical compartments of the mouse brain are identified and outlined mainly based ...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Despite vast numbers of studies of stained cells in the mouse brain, no current brain atlas provides...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
Spatially charting molecular cell types at single-cell resolution across the three-dimensional (3D) ...
Spatially charting molecular cell types at single-cell resolution across the three-dimensional (3D) ...
Brain maps are essential for integrating information and interpreting the structure-function relatio...
Brain maps are essential for integrating information and interpreting the structure-function relatio...
Brain maps are essential for integrating information and interpreting the structure-function relatio...
To understand the function of the brain and how its dysfunction leads to brain diseases, it is essen...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
Spatial gene expression profiles provide a novel means of exploring the structural organization of t...
Background Neuroanatomical compartments of the mouse brain are identified and outlined mainly based ...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Background Neuroanatomical compartments of the mouse brain are identified and outlined mainly based ...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Despite vast numbers of studies of stained cells in the mouse brain, no current brain atlas provides...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...