Neural stem cells (NSCs, B1 cells) are retained in the walls of the adult lateral ventricles but, unlike embryonic NSCs, are displaced from the ventricular zone (VZ) into the subventricular zone (SVZ) by ependymal cells. Apical and basal compartments, which in embryonic NSCs play essential roles in self-renewal and differentiation, are not evident in adult NSCs. Here we show that SVZ B1 cells in adult mice extend a minute apical ending to directly contact the ventricle and a long basal process ending on blood vessels. A closer look at the ventricular surface reveals a striking pinwheel organization specific to regions of adult neurogenesis. The pinwheel\u27s core contains the apical endings of B1 cells and in its periphery two types of epen...
Neural stem cells are maintained in the subventricular zone (SVZ) of the adult mammalian brain. Here...
The subventricular zone (SVZ) is a principal source of adult neural stem cells in the rodent brain, ...
Production of new neurons throughout adulthood has been well characterized in two brain regions, the...
SummaryNeural stem cells (NSCs, B1 cells) are retained in the walls of the adult lateral ventricles ...
The adult mammalian brain, for all of its complexity, develops from a single cell layered epithelium...
Summary: The adult mouse brain contains an extensive neurogenic niche in the lateral walls of the la...
Neurogenesis persists in selected regions of the adult mouse brain; among them, the ventricular-subv...
Major developments in the neural stem cell (NSC) field in recent years provide new insights into the...
The mammalian subependymal zone (SEZ; often called subventricular) situated at the lateral walls of ...
The unique cellular and vascular architecture of the adult ventricular-subventricular zone (V/SVZ) n...
Stem cells reside in specialized niches that regulate their self-renewal and differentiation. The va...
Neural stem cells (NSCs) generate the diverse types cell types that make up adult brain. NSCs persi...
Through adulthood the rodent subventricular zone (SVZ) stem cell niche generates new olfactory bulb ...
The walls of the lateral ventricles contain the largest germinal region in the adult mammalian brain...
The adult mouse brain contains an extensive neuro-genic niche in the lateral walls of the lateral ve...
Neural stem cells are maintained in the subventricular zone (SVZ) of the adult mammalian brain. Here...
The subventricular zone (SVZ) is a principal source of adult neural stem cells in the rodent brain, ...
Production of new neurons throughout adulthood has been well characterized in two brain regions, the...
SummaryNeural stem cells (NSCs, B1 cells) are retained in the walls of the adult lateral ventricles ...
The adult mammalian brain, for all of its complexity, develops from a single cell layered epithelium...
Summary: The adult mouse brain contains an extensive neurogenic niche in the lateral walls of the la...
Neurogenesis persists in selected regions of the adult mouse brain; among them, the ventricular-subv...
Major developments in the neural stem cell (NSC) field in recent years provide new insights into the...
The mammalian subependymal zone (SEZ; often called subventricular) situated at the lateral walls of ...
The unique cellular and vascular architecture of the adult ventricular-subventricular zone (V/SVZ) n...
Stem cells reside in specialized niches that regulate their self-renewal and differentiation. The va...
Neural stem cells (NSCs) generate the diverse types cell types that make up adult brain. NSCs persi...
Through adulthood the rodent subventricular zone (SVZ) stem cell niche generates new olfactory bulb ...
The walls of the lateral ventricles contain the largest germinal region in the adult mammalian brain...
The adult mouse brain contains an extensive neuro-genic niche in the lateral walls of the lateral ve...
Neural stem cells are maintained in the subventricular zone (SVZ) of the adult mammalian brain. Here...
The subventricular zone (SVZ) is a principal source of adult neural stem cells in the rodent brain, ...
Production of new neurons throughout adulthood has been well characterized in two brain regions, the...