Neurons derived from radial glial cells establish radial units in neocortex
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Summary
The results support the concept that a lineage relationship between neurons and proliferative radial glia may underlie the radial organization of neocortex.
- Type
- article
- Published
- 2001-02-08
- Cited by
- 2,033
- References
- 44
- OpenAlex
- https://openalex.org/W1503727145
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3041502
Keywords
Neocortex, Neurogenesis, Neuroscience, Biology, Neuroglia
References
- Neurons, astrocytes, and oligodendrocytes of the rat cerebral cortex originate from separate progenitor cells: an ultrastructural analysis of clonally related cells
- Identification of major cell classes in the developing mammalian nervous system
- Cell cycle parameters and patterns of nuclear movement in the neocortical proliferative zone of the fetal mouse
- Cell lineage in the rat cerebral cortex: a study using retroviral-mediated gene transfer.
- Vertebrate retinal ganglion cells are selected from competent progenitors by the action of Notch.
- Lineage of radial glia in the chicken optic tectum.
- Systematic widespread clonal organization in cerebral cortex.
- Interneuron migration from basal forebrain to neocortex: dependence on Dlx genes.
- Cell lineage in the cerebral cortex of the mouse studied in vivo and in vitro with a recombinant retrovirus.
- Proliferation "hot spots" in adult avian ventricular zone reveal radial cell division.
- Anatomical evidence for cerebellar and basal ganglia involvement in higher cognitive function.
- Radial glial identity is promoted by Notch1 signaling in the murine forebrain.
- The brain and intelligence.
- New and revised data on volumes of brain structures in insectivores and primates.
- The glial fascicle: an ontogenic and phylogenic unit guiding, supplying and distributing mammalian cortical neurons.
- The origins of cellular diversity in the mammalian central nervous system.
- Cellular migration patterns in the developing mouse cerebral cortex.
- Mitotic cycling of radial glial cells of the fetal murine cerebral wall: a combined autoradiographic and immunohistochemical study.
- Rethinking mammalian brain evolution
- Clusters of coupled neuroblasts in embryonic neocortex.
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- Developmental regulation of α‐amino‐3‐hydroxy‐5‐methyl‐4‐isoxazole‐propionic acid receptor subunit expression in forebrain and relationship to regional susceptibility to hypoxic/ischemic injury. I. Rodent cerebral white matter and cortex
- Chronic hypoxia up-regulates fibroblast growth factor ligands in the perinatal brain and induces fibroblast growth factor-responsive radial glial cells in the sub-ependymal zone.
- A 90° rotation of the mitotic spindle changes the orientation of mitoses of zebrafish neuroepithelial cells
- Induction of adult neurogenesis: molecular manipulation of neural precursors in situ.
- Mechanism of stem cells in the central nervous system
- Requirement for Neurogenesis to Proceed through the Division of Neuronal Progenitors following Differentiation of Epidermal Growth Factor and Fibroblast Growth Factor‐2–Responsive Human Neural Stem Cells
- Retinal stem cells in vertebrates: parallels and divergences.
- Proliferation dynamics of germinative zone cells in the intact and excitotoxically lesioned postnatal rat brain
- The cortical column: a structure without a function
- Phenotypic and functional heterogeneity of GFAP‐expressing cells in vitro: Differential expression of LeX/CD15 by GFAP‐expressing multipotent neural stem cells and non‐neurogenic astrocytes
- Enriched Monolayer Precursor Cell Cultures from Micro-Dissected Adult Mouse Dentate Gyrus Yield Functional Granule Cell-Like Neurons
- The receptor for Granulocyte-colony stimulating factor (G-CSF) is expressed in radial glia during development of the nervous system
- Confusing cortical columns
- Cellular immortality in brain tumours: an integration of the cancer stem cell paradigm.
- Conservation of developmental mechanisms in evolutionarily divergent brain structures
- Live microscopy of neural stem cell migration in brain slices.
- Characterization and identification of Sox2+ radial glia cells derived from rat embryonic cerebral cortex
- Cell transplantation therapies for spinal cord injury focusing on induced pluripotent stem cells
- Detection of mouse endogenous type B astrocytes migrating towards brain lesions.
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