Beginning from a limited pool of progenitors, the mammalian cerebral cortex forms highly organized functional neural circuits. However, the underlying cellular and molecular mechanisms regulating lineage transitions of neural stem cells (NSCs) and eventual production of neurons and glia in the developing neuroepithelium remains unclear. Methods to trace NSC division patterns and map the lineage of clonally related cells have advanced dramatically. However, many contemporary lineage tracing techniques suffer from the lack of cellular resolution of progeny cell fate, which is essential for deciphering progenitor cell division patterns. Presented is a protocol using mosaic analysis with double markers (MADM) to perform in vivo clonal analysis....
The concerted production of neurons and glia by neural stem cells (NSCs) is essential for neural cir...
Diverse regions develop within cerebral organoids generated from human induced pluripotent stem cell...
Mosaic analysis with double markers (MADM) technology enables the generation of genetic mosaic tissu...
Beginning from a limited pool of progenitors, the mammalian cerebral cortex forms highly organized f...
Studying the progression of the proliferative and differentiative patterns of neural stem cells at t...
The cerebral cortex is composed of a large variety of distinct cell-types including projection neuro...
Mosaic genetic analysis has been widely used in different model organisms such as the fruit fly to s...
The mammalian cerebral cortex is responsible for higher cognitive functions such as perception, cons...
SummaryWe describe a method termed MADM (mosaic analysis with double markers) in mice that allows si...
SummaryTime-lapse microscopy can capture patterns of development through multiple divisions for an e...
Development of the nervous system undergoes important transitions, including one from neurogenesis t...
<p>(<b>A</b>) Sample images of frontal sections from <i>Gli1<sup>CreERT2</sup>;H2B-GFP</i>, <i>Olig3...
SummaryWe present a method to label and trace the lineage of multiple neural progenitors simultaneou...
Mosaic analysis with double markers (MADM) technology enables concomitant fluorescent cell labeling ...
Single embryonic and adult neural stem cells (NSCs) are characterized by their self-renewal and diff...
The concerted production of neurons and glia by neural stem cells (NSCs) is essential for neural cir...
Diverse regions develop within cerebral organoids generated from human induced pluripotent stem cell...
Mosaic analysis with double markers (MADM) technology enables the generation of genetic mosaic tissu...
Beginning from a limited pool of progenitors, the mammalian cerebral cortex forms highly organized f...
Studying the progression of the proliferative and differentiative patterns of neural stem cells at t...
The cerebral cortex is composed of a large variety of distinct cell-types including projection neuro...
Mosaic genetic analysis has been widely used in different model organisms such as the fruit fly to s...
The mammalian cerebral cortex is responsible for higher cognitive functions such as perception, cons...
SummaryWe describe a method termed MADM (mosaic analysis with double markers) in mice that allows si...
SummaryTime-lapse microscopy can capture patterns of development through multiple divisions for an e...
Development of the nervous system undergoes important transitions, including one from neurogenesis t...
<p>(<b>A</b>) Sample images of frontal sections from <i>Gli1<sup>CreERT2</sup>;H2B-GFP</i>, <i>Olig3...
SummaryWe present a method to label and trace the lineage of multiple neural progenitors simultaneou...
Mosaic analysis with double markers (MADM) technology enables concomitant fluorescent cell labeling ...
Single embryonic and adult neural stem cells (NSCs) are characterized by their self-renewal and diff...
The concerted production of neurons and glia by neural stem cells (NSCs) is essential for neural cir...
Diverse regions develop within cerebral organoids generated from human induced pluripotent stem cell...
Mosaic analysis with double markers (MADM) technology enables the generation of genetic mosaic tissu...