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- W2487107850 abstract "Extract Abbreviations ... Introduction The subventricular zone (SVZ) is significantly expanded in the developing primate cortex, and the outer subventricular zone (OSVZ) in particular, had been suggested as a major site of cortical neurogenesis (Lukaszewicv et al. 2005; Rakic 1974; Smart et al. 2002). Cells within the OSVZ were found to express markers of radial glia and intermediate progenitor cells (Bayatti et al. 2008; Mo and Zecevic 2008; Zecevic et al. 2005), but it was not until time-lapse studies were performed that the neurogenic potential of these cells and the lineage relationship between them was demonstrated (Hansen et al. 2010). In the developing human neocortex, the outer radial glial-like (oRG) cells were observed to undergo asymmetrical division to self-renew and generate intermediate progenitor cells that undergo subsequent rounds of symmetrical divisions. Therefore, the oRG cells may be termed neural progenitor cells, and oRG daughter cells in human brain are better termed transit amplifying cells (Lui et al. 2011). It has been suggested that the OSVZ may be a primate specific feature and a hallmark of primate corticogenesis. But recent studies have shown that OSVZ progenitor cells (i.e., oRG cells) also exist in the ferret, a nonprimate species with a gyrencephalic brain; the agouti, a rodent with a gyrencephalic brain; and lissencephalic species such as marmoset, mouse, and rat (Fietz et al. 2010; Garcia-Moreno et al. 2012; Kelava et al. 2012; Martínez-Cerdeño et al. 2012; Reillo et al. 2011; Shitamukai et al. 2011; Wang et al. 2011). This chapter reviews recent data concerning these newly described progenitor cells, their role in cortical development, and how they may have contributed to evolutionary changes in cortical size and architecture." @default.
- W2487107850 created "2016-08-23" @default.
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- W2487107850 date "2012-12-01" @default.
- W2487107850 modified "2023-09-30" @default.
- W2487107850 title "Neurogenesis and Outer Subventricular Zone Radial Glial Cells" @default.
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