Dendritic and axonal morphology reflects the input and output of neurons and is a defining feature of neuronal types1,2, yet our knowledge of its diversity remains limited. Here, to systematically examine complete single-neuron morphologies on a brain-wide scale, we established a pipeline encompassing sparse labelling, whole-brain imaging, reconstruction, registration and analysis. We fully reconstructed 1,741 neurons from cortex, claustrum, thalamus, striatum and other brain regions in mice. We identified 11 major projection neuron types with distinct morphological features and corresponding transcriptomic identities. Extensive projectional diversity was found within each of these major types, on the basis of which some types were clustere...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
During neurogenesis, mitotic progenitor cells lining the ventricles ofthe embryonic mouse brain unde...
The striatum contributes to many cognitive processes and disorders, but its cell types are incomplet...
Summary: Parsing diverse nerve cells into biological types is necessary for understanding neural cir...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
An essential step toward understanding brain function is to establish a structural framework with ce...
Here we report the generation of a multimodal cell census and atlas of the mammalian primary motor c...
Reconstruction of the axonal projection patterns of single neurons has been an important tool for un...
Despite the importance of the mammalian neocortex for complex cognitive processes, we still lack a c...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
To understand the function of the brain and how its dysfunction leads to brain diseases, it is essen...
Single cell transcriptomics has transformed the characterization of brain cell identity by providing...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are in...
Several decades of intense research provided us with a grand framework describing the emergence of n...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
During neurogenesis, mitotic progenitor cells lining the ventricles ofthe embryonic mouse brain unde...
The striatum contributes to many cognitive processes and disorders, but its cell types are incomplet...
Summary: Parsing diverse nerve cells into biological types is necessary for understanding neural cir...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
An essential step toward understanding brain function is to establish a structural framework with ce...
Here we report the generation of a multimodal cell census and atlas of the mammalian primary motor c...
Reconstruction of the axonal projection patterns of single neurons has been an important tool for un...
Despite the importance of the mammalian neocortex for complex cognitive processes, we still lack a c...
The mammalian nervous system executes complex behaviors controlled by specialized, precisely positio...
To understand the function of the brain and how its dysfunction leads to brain diseases, it is essen...
Single cell transcriptomics has transformed the characterization of brain cell identity by providing...
Single-cell transcriptomics can provide quantitative molecular signatures for large, unbiased sample...
SummaryThe striatum contributes to many cognitive processes and disorders, but its cell types are in...
Several decades of intense research provided us with a grand framework describing the emergence of n...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
During neurogenesis, mitotic progenitor cells lining the ventricles ofthe embryonic mouse brain unde...
The striatum contributes to many cognitive processes and disorders, but its cell types are incomplet...