Rchr
J-GLOBAL ID:201101048049898494   Update date: Jan. 30, 2024

Namba Takashi

Namba Takashi
Research field  (1): Neuroanatomy and physiology
Research keywords  (1): Cell metabolism
Research theme for competitive and other funds  (2):
  • 2013 - 2014 神経軸索形成を制御するシグナルネットワークの解明
  • 2008 - 2010 Analysis of neuropathogenesis for autism spectrum disorders caused by mutation of SHANK3 gene.
Papers (64):
  • Wieland B Huttner, Michael Heide, Felipe Mora-Bermúdez, Takashi Namba. Neocortical neurogenesis in development and evolution-Human-specific features. The Journal of comparative neurology. 2024
  • Vasiliki Gkini, Takashi Namba. Glutaminolysis and the Control of Neural Progenitors in Neocortical Development and Evolution. The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry. 2023. 29. 2. 177-189
  • Samir Vaid, Oskari Heikinheimo, Takashi Namba. Embryonic mouse medial neocortex as a model system for studying the radial glial scaffold in fetal human neocortex. Journal of neural transmission (Vienna, Austria : 1996). 2023. 130. 3. 185-194
  • Jan Fischer, Eduardo Fernández Ortuño, Fabio Marsoner, Annasara Artioli, Jula Peters, Takashi Namba, Christina Eugster Oegema, Wieland B Huttner, Julia Ladewig, Michael Heide. Human-specific ARHGAP11B ensures human-like basal progenitor levels in hominid cerebral organoids. EMBO reports. 2022. 23. 11. e54728
  • Anneline Pinson, Lei Xing, Takashi Namba, Nereo Kalebic, Jula Peters, Christina Eugster Oegema, Sofia Traikov, Katrin Reppe, Stephan Riesenberg, Tomislav Maricic, et al. Human TKTL1 implies greater neurogenesis in frontal neocortex of modern humans than Neanderthals. Science (New York, N.Y.). 2022. 377. 6611. eabl6422
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MISC (31):
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