AbstractCell lineage analysis in the cortex has revealed two clonal patterns, clustered and widespread clones. To determine the relationship of these patterns, progenitor cells were infected with a retroviral library encoding alkaline phosphatase, and cortical sibling cells were identified using PCR. Clones labeled at E15 consisted of single cells or small cell clusters (52%) or of wide-spread cells (48%). However, widespread clones consisted of multiple neuronal or glial cell types, spaced systematically at 2–3 mm intervals. The data suggest that migratory multipotential progenitors divide asymmetrically at intervals defined by cell cycle length, producing single cells or clusters of cells in different cortical regions. Transition from mul...
The structure of the human neocortex underlies species-specific traits and reflects intricate develo...
International audienceAstrocytes play essential roles in the neural tissue where they form a continu...
The mammalian cerebral cortex is responsible for higher cognitive functions such as perception, cons...
AbstractCell lineage analysis in the cortex has revealed two clonal patterns, clustered and widespre...
AbstractTo analyze cell lineage in the rhesus monkey neocortex, we used recombinant retroviruses to ...
This study addressed several questions relating to the ontogeny of the central nervous system. By us...
Astrocytes are one of the most numerous cell types in the brain. They consist in ramified glial cell...
To correlate clonal patterns in the rat striatum with adult neu-ronal phenotypes, we labeled striata...
SummaryThe mammalian neocortex is composed of two major neuronal cell types with distinct origins: e...
During early development, neurons in the mammalian cerebral cortex are generated in a proliferative ...
The mature cerebral cortex harbors a heterogeneous population of glutamatergic neurons, organized i...
The cerebral cortex is composed of a large variety of distinct cell-types including projection neuro...
SummaryTime-lapse microscopy can capture patterns of development through multiple divisions for an e...
Beginning from a limited pool of progenitors, the mammalian cerebral cortex forms highly organized f...
Understanding how the human cerebral cortex evolved to its present complex state is a fascinating to...
The structure of the human neocortex underlies species-specific traits and reflects intricate develo...
International audienceAstrocytes play essential roles in the neural tissue where they form a continu...
The mammalian cerebral cortex is responsible for higher cognitive functions such as perception, cons...
AbstractCell lineage analysis in the cortex has revealed two clonal patterns, clustered and widespre...
AbstractTo analyze cell lineage in the rhesus monkey neocortex, we used recombinant retroviruses to ...
This study addressed several questions relating to the ontogeny of the central nervous system. By us...
Astrocytes are one of the most numerous cell types in the brain. They consist in ramified glial cell...
To correlate clonal patterns in the rat striatum with adult neu-ronal phenotypes, we labeled striata...
SummaryThe mammalian neocortex is composed of two major neuronal cell types with distinct origins: e...
During early development, neurons in the mammalian cerebral cortex are generated in a proliferative ...
The mature cerebral cortex harbors a heterogeneous population of glutamatergic neurons, organized i...
The cerebral cortex is composed of a large variety of distinct cell-types including projection neuro...
SummaryTime-lapse microscopy can capture patterns of development through multiple divisions for an e...
Beginning from a limited pool of progenitors, the mammalian cerebral cortex forms highly organized f...
Understanding how the human cerebral cortex evolved to its present complex state is a fascinating to...
The structure of the human neocortex underlies species-specific traits and reflects intricate develo...
International audienceAstrocytes play essential roles in the neural tissue where they form a continu...
The mammalian cerebral cortex is responsible for higher cognitive functions such as perception, cons...