The realized niche of adult neural stem cells

scientific article published on January 2006

The realized niche of adult neural stem cells is …
instance of (P31):
review articleQ7318358
scholarly articleQ13442814

External links are
P356DOI10.1007/S12015-006-0051-6
P8608Fatcat IDrelease_brifuwcmqrhr7kd3gp7bthjvme
P698PubMed publication ID17625259

P2093author name stringStefan Momma
Christian Nern
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The aging neurogenic subventricular zone.Q42493596
Astroglia induce neurogenesis from adult neural stem cellsQ43977940
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Endogenous and exogenous ciliary neurotrophic factor enhances forebrain neurogenesis in adult miceQ44614302
Adult spinal cord stem cells generate neurons after transplantation in the adult dentate gyrus.Q46175129
New neurons follow the flow of cerebrospinal fluid in the adult brainQ46365497
GABAergic excitation promotes neuronal differentiation in adult hippocampal progenitor cellsQ46698691
FGF-2 is sufficient to isolate progenitors found in the adult mammalian spinal cordQ46830350
Neurogenesis in the adult spinal cord in an experimental model of multiple sclerosisQ46899497
Restoring production of hippocampal neurons in old age.Q48107293
Endothelial trophic support of neuronal production and recruitment from the adult mammalian subependyma.Q48176770
Multipotent stem/progenitor cells with similar properties arise from two neurogenic regions of adult human brainQ48210082
P433issue3
P921main subjectneural stem cellQ2944097
P304page(s)233-240
P577publication date2006-01-01
P1433published inStem Cell Reviews and ReportsQ7607285
P1476titleThe realized niche of adult neural stem cells
P478volume2

Reverse relations

cites work (P2860)
Q26826870Brain homeostasis: VEGF receptor 1 and 2-two unequal brothers in mind
Q37597895Conserved miR-8/miR-200 defines a glial niche that controls neuroepithelial expansion and neuroblast transition
Q47807163Microfluidic engineering of neural stem cell niches for fate determination.
Q26765921Mimicking Neural Stem Cell Niche by Biocompatible Substrates
Q41788576Nutrition-responsive glia control exit of neural stem cells from quiescence.

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