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1
Irradiation of potential cancer stem-cell niche in the
SVZ
may influence survival.
2
Increasing mean dose to the ipsilateral
SVZ
was associated with significantly improved OAS.
3
The
SVZ
shows a different expression pattern of Cu-regulatory genes from the CP.
4
SVZ
dose was not associated with outcome for any of the dose levels assessed.
5
Cultured neural precursor cells derived from the adult
SVZ
also expressed both trophinin and bystin.
6
We describe a transgenic system that allows for targeted labeling of ependymal cells within the
V
-
SVZ
.
7
These characteristics indicate that this subset of trophinin-positive cells in the
SVZ
is type C cells.
8
These findings provide insight into the molecular basis of adult neurogenesis in the
SVZ
and RMS.
9
We show here that the polarity kinase MARK2 maintains its expression in the postnatal
SVZ
-
OB
system.
10
In control rats, Cu levels were significantly higher in the
SVZ
than other brain regions examined.
11
A recent study reported that interneurons are constantly generating in the adult human striatum from the
SVZ
.
12
As neurogenesis progresses in the adult
SVZ
,
cell fate restriction is essential to direct proper lineage commitment.
13
Tissues showed edema, decreased cell number, and disordered arrangement in the
SVZ
in the snake venom group.
14
The BMMC transplant stimulated a transitory increase in the proliferation of
SVZ
cells in the BCCL group.
15
In this article, the authors report on four main types of
SVZ
walls in the human brain.
16
Dose-volume parameters to the
SVZ
were extracted from treatment planning system and analyzed in relation to survival outcomes.
svz
postnatal svz
adult svz
increase svz
ipsilateral svz
ventral svz