Showing 101 - 103 results of 103 for search '"neural stem cell"', query time: 0.05s Refine Results
  1. 101

    Viral encephalitis and seizures cause rapid depletion of neuronal progenitor cells and alter neurogenesis in the adult mouse dentate gyrus by Alberto Pauletti, Polina Gurlo, Edna Weiß, Ana Beatriz DePaula-Silva, Karen S. Wilcox, Sonja Bröer

    Published 2025-01-01
    “…Given that epilepsy conventionally correlates with hippocampal sclerosis and neuronal degeneration, a potentially innovative avenue for therapeutic intervention involves fostering adult neurogenesis, a process primarily occurring within the subgranular zone of the dentate gyrus (DG) through the differentiation of neural stem cells (NSC). While experimental seizures induced by chemoconvulsants or electrical stimulation transiently enhance neurogenesis, the effects of encephalitis and the resultant virus-induced seizures remain inadequately understood. …”
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  2. 102

    High spatial resolution gene expression profiling and characterization of neuroblasts migrating in the peri-injured cortex using photo-isolation chemistry by Takuya Miyamoto, Kazuya Kuboyama, Mizuki Honda, Mizuki Honda, Yasuyuki Ohkawa, Shinya Oki, Shinya Oki, Kazunobu Sawamoto, Kazunobu Sawamoto

    Published 2025-01-01
    “…In the ventricular-subventricular-zone (V-SVZ) of the postnatal mammalian brain, immature neurons (neuroblasts) are generated from neural stem cells throughout their lifetime. These V-SVZ-derived neuroblasts normally migrate to the olfactory bulb through the rostral migratory stream, differentiate into interneurons, and are integrated into the preexisting olfactory circuit. …”
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  3. 103

    Sex-based differences in the long-term fate of hippocampal neurons born after a traumatic brain injury by Hannah C. Downing, Hannah C. Downing, Ashley B. Glover, Jessica E. Gebhardt, Jessica E. Gebhardt, Katherine L. Thompson, Kathryn E. Saatman, Kathryn E. Saatman, Kathryn E. Saatman

    Published 2025-02-01
    “…IntroductionModerate-to-severe traumatic brain injury (TBI) results in an early loss of immature hippocampal granule cells and the activation of typically quiescent neural stem cells (NSCs) in the dentate gyrus. Activation of NSCs leads to a robust increase in proliferation and generation of neural progenitor cells (NPCs), supporting restoration of the immature neuron population of over a period of 1–2 weeks. …”
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