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Microscopy and Microanalysis, ISSN 1431-9276, 08/2018, Volume 24, Issue S1, pp. 1276 - 1277
Journal Article
Seminars in Cell and Developmental Biology, ISSN 1084-9521, 2019
In the developing mammalian neocortex, neural stem cells (NSCs) gradually alter their characteristics as development proceeds. NSCs initially expand the... 
Hbp1 | Gliogenesis | Neocortical development | Hes5 | Neurogenesis | Neural stem cell
Journal Article
Frontiers in Human Neuroscience, ISSN 1662-5161, 2016, Volume 10, Issue 2016, p. 566
Glia are essential for brain functioning during development and in the adult brain. Here, we discuss the various roles of both microglia and astrocytes, and... 
Glial cells | Neurodevelopmental disorders | Astrocytes | Brain development | Microglia | Influence | Neovascularization | Research | Analysis | Angiogenesis | Synaptogenesis | Pruning | Gliogenesis | glial cells | Brain Development
Journal Article
The Journal of Neuroscience, ISSN 0270-6474, 11/2017, Volume 37, Issue 46, p. 11245
Regulation of the neuron–glia cell-fate switch is a critical step in the development of the CNS. Previously, we demonstrated that Lhx2 is a necessary and... 
Pax6 protein | Transcription factors | Astrocytes | Central nervous system | Gliogenesis | Gene expression | Neurogenesis | Hippocampus | Neuronal-glial interactions
Journal Article
International Journal of Developmental Neuroscience, ISSN 0736-5748, 12/2010, Volume 28, Issue 8, pp. 676 - 676
Journal Article
Journal Article
Journal of Comparative Neurology, ISSN 0021-9967, 08/2000, Volume 424, Issue 3, pp. 397 - 408
Journal Article
06/2009
During development of the mammalian nervous system, neural stem cells generate neurons first and glia second, thereby allowing the initial establishment of... 
Tctex-1 | gliogenesis | asymmetric divisions | SHP-2 | neural stem cells | symmetric divisions | Lfc | neurogenesis | 0317
Dissertation
Cellular and Molecular Neurobiology, ISSN 0272-4340, 4/2018, Volume 38, Issue 3, pp. 579 - 593
Journal Article
Nature, ISSN 0028-0836, 01/2010, Volume 463, Issue 7279, pp. 318 - 325
The inference of transcriptional networks that regulate transitions into physiological or pathological cellular states remains a central challenge in systems... 
SURVIVAL | GROWTH-FACTOR RECEPTOR | MULTIDISCIPLINARY SCIENCES | C-MYC | MECHANISMS | PROLIFERATION | NEURAL STEM-CELL | DIFFERENTIATION | EXPRESSION | BINDING | GLIOGENESIS | Neurons - pathology | Prognosis | Glioma - diagnosis | Humans | Brain Neoplasms - pathology | Gene Expression Regulation, Neoplastic | Gene Regulatory Networks | Glioma - genetics | Cell Differentiation - genetics | Cell Transformation, Neoplastic - genetics | Neoplasm Invasiveness - pathology | Glioma - pathology | Transcription, Genetic | Neurons - metabolism | Cellular Reprogramming - genetics | STAT3 Transcription Factor - genetics | STAT3 Transcription Factor - metabolism | Reproducibility of Results | Brain Neoplasms - diagnosis | CCAAT-Enhancer-Binding Protein-beta - genetics | Computational Biology | Brain Neoplasms - genetics | Mesenchymal Stromal Cells - metabolism | Mice, SCID | Cell Transformation, Neoplastic - metabolism | CCAAT-Enhancer-Binding Protein-beta - metabolism | Animals | Cell Line, Tumor | Mice, Inbred NOD | Mesoderm - metabolism | Mice | Mesenchymal Stromal Cells - pathology | Cell Transformation, Neoplastic - pathology | Neoplasm Invasiveness - genetics | Mesoderm - pathology | Transcription factors | Gliomas | Physiological aspects | Genetic aspects | Research | Genetic transcription | Risk factors | Proteins | Genotype & phenotype | Brain | Reverse engineering | Brain cancer | Regression analysis | Gene expression
Journal Article