International audienceNeural stem cells (NSCs) represent a remarkable developmental unit, necessary for the proper functioning of neurogenesis, by retaining their plasticity to self-renew and give rise to progeny throughout life in specific regions of the adult brain. Although NSCs were thought to merely represent a stem cell type in the brain, recent advances have demonstrated the incredible complexity of NSC identity and functions. Ranging between quiescence, activation and intermediary subtypes, NSCs choose their fate through their developmental inheritance, regional positioning within the niche, as well as dynamic transcriptional and metabolic states. The plasticity of their developmental program is reflected in the tremendous changes t...
New neurons are generated throughout life in distinct areas of the mammalian brain. This process, ca...
Adult neural stem and progenitor cells (NSPCs) contribute to learning, memory, maintenance of homeos...
Neural stem cells (NSCs) in the walls of the lateral ventricles continue to produce new neurons and ...
Adult neural stem and progenitor cells (NSPCs) offer a unique opportunity for neural regeneration an...
Neural stem cells (NSCs) have been proposed as a promising cellular source for the treatment of dise...
The adult mammalian brain contains self-renewable, multipotent neural stem cells (NSCs) that are res...
The adult mammalian brain contains self-renewable, multipotent neural stem cells (NSCs) that are res...
[[abstract]]Neural stem cells (NSCs) have been proposed as a promising cellular source for the treat...
[[abstract]]Neural stem cells (NSCs) have been proposed as a promising cellular source for the treat...
Neural stem cells (NSCs) are present in the mammalian adult nervous system and are found in two spec...
Neural stem cells (NSCs) are present in the mammalian adult nervous system and are found in two spec...
[[abstract]]Stem cells self-renew and generate various cell types in their respective lineages. They...
The concept of immutability of the nervous tissue has been lately replaced with the new idea that a ...
Stem cells are believed to provide a tool by which new cells and tissues can be made and by which da...
© 2016 Lachlan Harris et al. The cerebral cortex is essential for our higher cognitive functions and...
New neurons are generated throughout life in distinct areas of the mammalian brain. This process, ca...
Adult neural stem and progenitor cells (NSPCs) contribute to learning, memory, maintenance of homeos...
Neural stem cells (NSCs) in the walls of the lateral ventricles continue to produce new neurons and ...
Adult neural stem and progenitor cells (NSPCs) offer a unique opportunity for neural regeneration an...
Neural stem cells (NSCs) have been proposed as a promising cellular source for the treatment of dise...
The adult mammalian brain contains self-renewable, multipotent neural stem cells (NSCs) that are res...
The adult mammalian brain contains self-renewable, multipotent neural stem cells (NSCs) that are res...
[[abstract]]Neural stem cells (NSCs) have been proposed as a promising cellular source for the treat...
[[abstract]]Neural stem cells (NSCs) have been proposed as a promising cellular source for the treat...
Neural stem cells (NSCs) are present in the mammalian adult nervous system and are found in two spec...
Neural stem cells (NSCs) are present in the mammalian adult nervous system and are found in two spec...
[[abstract]]Stem cells self-renew and generate various cell types in their respective lineages. They...
The concept of immutability of the nervous tissue has been lately replaced with the new idea that a ...
Stem cells are believed to provide a tool by which new cells and tissues can be made and by which da...
© 2016 Lachlan Harris et al. The cerebral cortex is essential for our higher cognitive functions and...
New neurons are generated throughout life in distinct areas of the mammalian brain. This process, ca...
Adult neural stem and progenitor cells (NSPCs) contribute to learning, memory, maintenance of homeos...
Neural stem cells (NSCs) in the walls of the lateral ventricles continue to produce new neurons and ...