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Brain Information Dynamics (Grants-in-Aid for Scientific Research on Innovative Areas)

Haruhiko Bito
Graduate School of Medicine
Professor
The goal is to establish a new cross-disciplinary research field, "Brain Information Dynamics". This encompasses the construction and modeling of local cytoarchitecture, which is able to define information flow in the brain, high-resolution recording and manipulation of multi-area network dynamics, model validation with a view to closed-loop control, and the construction of innovative brain-based architectures that incorporate the results of these studies.
Elucidation for the establishment of brain information dynamics
Brain Information Dynamics (Grants-in-Aid for Scientific Research on Innovative Areas)

Related links

Related publications

Inoue et al., Cell 177, 1346-1360 (2019); Tanaka et al., Nat Human Behavior 1, 748-756 (2017), Hoang et al., Front Comput Biol 16, e1008075 (2020); Yamakawa, Front Comput Neurosci 14, 74 (2020), Yamazaki T et al. Human-scale Brain Simulation via Supercomputer: A Case Study on the Cerebellum. Neuroscience. 462: 235-246 (2021).

Related patents

1.US patent 10836802 (US20170152295, 2020.11.17), Canadian Patent CA2951780 (2020.2.11),          European Patent EP 3156482 (2017.4.19), Chinese Patent CN106687588 (2017.5.17), India Patent IN201617042532 (2017.3.24)
Inventors: Haruhiko Bito, Masatoshi Inoue, Atsuya Takeuchi, Junichi Nakai, Masamichi Okura;
Invention: Calcium reporter gene,
Assignee: Japan Science and Technology Agency

2.³ö¬ºÅPCT/JP2013/068289, ÌØîŠ2012-205892
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SDGs

  • SDG3 Ensure healthy lives and promote well-being for all at all ages
  • SDG9 Build resilient infrastructure, promote inclusive and sustainable industrialization and foster innovation

Contact

  • Graduate School of Medicine, Cellular and Molecular Physiology, Masanori Matsuzaki
  • ex. 23471
  • Email: mzakim[at]m.u-tokyo.ac.jp
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