Rchr
J-GLOBAL ID:202001012232726886   Update date: Oct. 25, 2024

Yamada Rikuhiro

ヤマダ リクヒロ | Yamada Rikuhiro
Affiliation and department:
Job title: Associate professor
Other affiliations (2):
  • RIKEN  RIKEN Center for Biosystems Dynamics Research   Visiting scientist
  • The University of Tokyo  Graduate School of Medicine   Visiting researcher
Research field  (2): Neuroscience - general ,  Biophysics
Research keywords  (5): sleep ,  data science ,  biostatistics ,  mathematical model ,  mouse genetics
Research theme for competitive and other funds  (3):
  • 2021 - 2024 マウス睡眠EEG/EMGデータ自動ステージ判定アルゴリズムと周辺ソフトウェア開発
  • 2018 - 2023 Designing the mammalian biological oscillators
  • 2014 - 2017 Toward understanding the detection mechanism of the gradually changing time-information
Papers (28):
  • Rikuhiro G. Yamada, Kyoko Matsuzawa, Koji L. Ode, Hiroki R. Ueda. An automated sleep staging tool based on simple statistical features of mice electroencephalography (EEG) and electromyography (EMG) data. European Journal of Neuroscience. 2024. 60. 7. 5467-5486
  • Yimeng Wang, Siyu Cao, Daisuke Tone, Hiroshi Fujishima, Rikuhiro G. Yamada, Rei-ichiro Ohno, Shoi Shi, Kyoko Matsuzawa, Mari Kaneko, Maki Ukai-Tadenuma, et al. Post-synaptic competition between calcineurin and PKA regulates mammalian sleep-wake cycles. 2023
  • Kazuhiro Kon, Koji L. Ode, Tomoyuki Mano, Hiroshi Fujishima, Daisuke Tone, Chika Shimizu, Shinnosuke Shiono, Saori Yada, Junko Yoshida Garçon, Mari Kaneko, et al. Cortical parvalbumin neurons are responsible for homeostatic sleep rebound through CaMKII activation. 2023
  • Daisuke Tone, Koji L. Ode, Qianhui Zhang, Hiroshi Fujishima, Rikuhiro G. Yamada, Yoshiki Nagashima, Katsuhiko Matsumoto, Zhiqing Wen, Shota Y. Yoshida, Tomoki T. Mitani, et al. Distinct phosphorylation states of mammalian CaMKIIβ control the induction and maintenance of sleep. PLOS Biology. 2022. 20. 10. e3001813-e3001813
  • Arthur Millius, Rikuhiro Yamada, Hiroshi Fujishima, Kazuhiko Maeda, Daron M. Standley, Kenta Sumiyama, Dimitri Perrin, Hiroki R. Ueda. Circadian ribosome profiling reveals a role for the Period2 upstream opening reading frame in sleep. bioRxiv. 2022
more...
MISC (14):
  • 曹思ぎょく, 戸根大輔, 山田陸裕, 隅山健太, 上田泰己, 上田泰己. Study on the dephosphorylated-modulation of synaptic proteins engaged in sleep-wakefulness regulation. 日本薬理学雑誌. 2023. 158. Supplement
  • バイエステロッチ マリアネウス, 史蕭逸, 戸根大輔, 大出晃士, 藤島博史, 山田陸裕, 隅山健太, 上田泰己. Investigating roles of pore-loop cation channels for cortical neuronal synchrony and sleep quality and time. 時間生物学. 2023. 29. 2
  • 山浦港生, 山浦港生, 戸根大輔, 山田陸裕, 山田陸裕, 山田陸裕, 木下福章, 木下福章, 上田泰己, 上田泰己, et al. アルツハイマー病関連因子による睡眠要求量制御機構の解析. 時間生物学. 2023. 29. 2
  • 山本敬太, 山本敬太, YILIN Jiang, 戸根大輔, 戸根大輔, 山田陸裕, 山田陸裕, 上田泰己, 上田泰己, 上田泰己. in vitro睡眠評価系を用いた神経伝達と睡眠制御の解析. 時間生物学. 2023. 29. 2
  • Rikuhiro G. Yamada, Hiroki Ueda. Molecular mechanisms of REM sleep. The CELL. 2020. 52. 10. 17-20
more...
Lectures and oral presentations  (11):
  • 夢見る睡眠研究
    (第75回理研イブニングセミナー 2019)
  • Sleep measurement 次世代遺伝学と表現型解析
    (第4回バイオインフォマティクスアゴラ 2018)
  • 生物試料組織透明化技術(CUBIC法)の開発と展開
    (メディカルジャパン2016 2016)
  • A hypothetical mechanism for encoding environmental time information in mouse SCN
    (2015)
  • In vitro SCN's responses to environmental timing cues
    (2013)
more...
Education (3):
  • 2003 - 2007 Tokyo Institute of Technology Interdisciplinary Graduate School of Science and Engineering
  • 2001 - 2003 Kyoto University Graduate School of Science
  • 1997 - 2001 Tokyo Institute of Technology School of Bioscience and Biotechnology
Professional career (1):
  • Ph.D. (Tokyo Institute of Technology)
Work history (11):
  • 2024/04 - 現在 Kurume University Institute of Life Science
  • 2023/04 - 現在 RIKEN Center for Biosystems Dynamics Research Visiting scientist
  • 2020/08 - 現在 The University of Tokyo The University of Tokyo Graduate School of Medicine Visiting researcher
  • 2019/10 - 現在 CUBICStars, Inc.
  • 2023/04 - 2024/03 Osaka University Graduate School of Medicine Specially Appointed Researcher/Fellow (Full time)
Show all
Awards (1):
  • 2011 - RIKEN RIKEN Research and Technology Incentive Awards 2010 Elucidation of a design principle in the circadian transcriptional network
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