Recent data show that the final events of mammalian brain organogenesis may depend in part on the direct control of neural stem cell (NSC) proliferation and survival. Environmental and intrinsic factors play a role throughout development and during adulthood to regulate NSC proliferation. The NSCs acquire new competences throughout development, including adulthood, and this change in competence is region-specific. The factors controlling NSC survival, undifferentiated state, proliferation, and cell-cycle number are beginning to be identified, but the links between them remain unclear. However, current knowledge should help to formulate an understanding of how a stem cell can generate a new stem cell
Building and functioning of the human brain requires the precise orchestration and execution of myri...
Building and functioning of the human brain requires the precise orchestration and execution of myri...
Adult somatic stem cells in various organs maintain homeostatic tissue regeneration and enhance plas...
Recent data show that the final events of mammalian brain organogenesis may depend in part on the di...
Recent data show that the final events of mammalian brain organogenesis may depend in part on the di...
This article is concerned with the idea that neural precursor cells in vertebrates can self-renew an...
International audienceThe ‘identity’ of the neural stem cell (NSC) in the adult mammalian brain has ...
Neural stem cell (NSCs) are self-renewing, multipotent cells able to generate neurons, astrocytes an...
grantor: University of TorontoNeural stem cells are self-renewing precursor cells that hav...
grantor: University of TorontoNeural stem cells are self-renewing precursor cells that hav...
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...
Building and functioning of the human brain requires the precise orchestration and execution of myri...
The concept of immutability of the nervous tissue has been lately replaced with the new idea that a ...
New neurons are generated throughout life in distinct areas of the mammalian brain. This process, ca...
Building and functioning of the human brain requires the precise orchestration and execution of myri...
Building and functioning of the human brain requires the precise orchestration and execution of myri...
Adult somatic stem cells in various organs maintain homeostatic tissue regeneration and enhance plas...
Recent data show that the final events of mammalian brain organogenesis may depend in part on the di...
Recent data show that the final events of mammalian brain organogenesis may depend in part on the di...
This article is concerned with the idea that neural precursor cells in vertebrates can self-renew an...
International audienceThe ‘identity’ of the neural stem cell (NSC) in the adult mammalian brain has ...
Neural stem cell (NSCs) are self-renewing, multipotent cells able to generate neurons, astrocytes an...
grantor: University of TorontoNeural stem cells are self-renewing precursor cells that hav...
grantor: University of TorontoNeural stem cells are self-renewing precursor cells that hav...
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...
Building and functioning of the human brain requires the precise orchestration and execution of myri...
The concept of immutability of the nervous tissue has been lately replaced with the new idea that a ...
New neurons are generated throughout life in distinct areas of the mammalian brain. This process, ca...
Building and functioning of the human brain requires the precise orchestration and execution of myri...
Building and functioning of the human brain requires the precise orchestration and execution of myri...
Adult somatic stem cells in various organs maintain homeostatic tissue regeneration and enhance plas...