Tatsunori Seki

Affiliations: 
Case Western Reserve University, School of Medicine 
Area:
Neuroscience
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"Tatsunori Seki"
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Publications

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Sasaki‐Takahashi N, Shinohara H, Shioda S, et al. (2020) The polarity and properties of radial glia-like neural stem cells are altered by seizures with status epilepticus: Study using an improved mouse pilocarpine model of epilepsy Hippocampus. 30: 250-262
Seki T, Hori T, Miyata H, et al. (2019) Analysis of proliferating neuronal progenitors and immature neurons in the human hippocampus surgically removed from control and epileptic patients. Scientific Reports. 9: 18194
Namba T, Shinohara H, Seki T. (2019) Non-radial tortuous migration with cell polarity alterations of newly generated granule neurons in the neonatal rat dentate gyrus Brain Structure & Function. 224: 3247-3262
Kinjo T, Ito M, Seki T, et al. (2019) Prenatal exposure to valproic acid is associated with altered neurocognitive function and neurogenesis in the dentate gyrus of male offspring rats. Brain Research. 146403
Matsue K, Minakawa S, Kashiwagi T, et al. (2018) Correction to: Dentate granule progenitor cell properties are rapidly altered soon after birth. Brain Structure & Function
Matsue K, Minakawa S, Kashiwagi T, et al. (2017) Dentate granule progenitor cell properties are rapidly altered soon after birth. Brain Structure & Function
Mimura-Yamamoto Y, Shinohara H, Kashiwagi T, et al. (2017) Dynamics and function of CXCR4 in formation of the granule cell layer during hippocampal development. Scientific Reports. 7: 5647
Uemori T, Toda K, Seki T. (2017) Seizure severity-dependent selective vulnerability of the granule cell layer and aberrant neurogenesis in the rat hippocampus. Hippocampus. 27: 1054-1068
Yamaguchi M, Seki T, Imayoshi I, et al. (2015) Neural stem cells and neuro/gliogenesis in the central nervous system: understanding the structural and functional plasticity of the developing, mature, and diseased brain. The Journal of Physiological Sciences : Jps
Seki T, Sato T, Toda K, et al. (2014) Distinctive population of Gfap-expressing neural progenitors arising around the dentate notch migrate and form the granule cell layer in the developing hippocampus. The Journal of Comparative Neurology. 522: 261-83
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