SummaryTime-lapse microscopy can capture patterns of development through multiple divisions for an entire clone of proliferating cells. Images are taken every few minutes over many days, generating data too vast to process completely by hand. Computational analysis of this data can benefit from occasional human guidance. Here we combine improved automated algorithms with minimized human validation to produce fully corrected segmentation, tracking, and lineaging results with dramatic reduction in effort. A web-based viewer provides access to data and results. The improved approach allows efficient analysis of large numbers of clones. Using this method, we studied populations of progenitor cells derived from the anterior and posterior embryon...
AbstractThe identification of the genes regulating neural progenitor cell (NPC) functions is of grea...
International audienceNeurogenesis in the murine cerebral cortex involves the coordinated divisions ...
The neurosphere assay can detect and expand neural stem cells (NSCs) and progenitor cells, but it ca...
SummaryTime-lapse microscopy can capture patterns of development through multiple divisions for an e...
Time-lapse microscopy can capture patterns of development through multiple divisions for an entire c...
Beginning from a limited pool of progenitors, the mammalian cerebral cortex forms highly organized f...
io ll a contrastmicroscopy allows image capture at a temporal res-l mouse cerebral cortex. NPCs incl...
Brain development, and indeed development in general, is complex. Correct development requires tight...
Studying the progression of the proliferative and differentiative patterns of neural stem cells at t...
SummaryVariation in cerebral cortex size and complexity is thought to contribute to differences in c...
When studying developmental neurological diseases such as autism spectrum disorder, human brain tiss...
The cerebral cortex contains multiple areas with distinctive cytoarchitectonical patterns, but the c...
AbstractCell lineage analysis in the cortex has revealed two clonal patterns, clustered and widespre...
During neurogenesis, mitotic progenitor cells lining the ventricles ofthe embryonic mouse brain unde...
Diverse regions develop within cerebral organoids generated from human induced pluripotent stem cell...
AbstractThe identification of the genes regulating neural progenitor cell (NPC) functions is of grea...
International audienceNeurogenesis in the murine cerebral cortex involves the coordinated divisions ...
The neurosphere assay can detect and expand neural stem cells (NSCs) and progenitor cells, but it ca...
SummaryTime-lapse microscopy can capture patterns of development through multiple divisions for an e...
Time-lapse microscopy can capture patterns of development through multiple divisions for an entire c...
Beginning from a limited pool of progenitors, the mammalian cerebral cortex forms highly organized f...
io ll a contrastmicroscopy allows image capture at a temporal res-l mouse cerebral cortex. NPCs incl...
Brain development, and indeed development in general, is complex. Correct development requires tight...
Studying the progression of the proliferative and differentiative patterns of neural stem cells at t...
SummaryVariation in cerebral cortex size and complexity is thought to contribute to differences in c...
When studying developmental neurological diseases such as autism spectrum disorder, human brain tiss...
The cerebral cortex contains multiple areas with distinctive cytoarchitectonical patterns, but the c...
AbstractCell lineage analysis in the cortex has revealed two clonal patterns, clustered and widespre...
During neurogenesis, mitotic progenitor cells lining the ventricles ofthe embryonic mouse brain unde...
Diverse regions develop within cerebral organoids generated from human induced pluripotent stem cell...
AbstractThe identification of the genes regulating neural progenitor cell (NPC) functions is of grea...
International audienceNeurogenesis in the murine cerebral cortex involves the coordinated divisions ...
The neurosphere assay can detect and expand neural stem cells (NSCs) and progenitor cells, but it ca...