Rchr
J-GLOBAL ID:201801010487613219   Update date: Jan. 08, 2025

Okada Ken-ichi

オカダ ケンイチ | Okada Ken-ichi
Affiliation and department:
Research field  (1): Basic brain sciences
Research keywords  (2): 眼球運動 ,  神経生理学
Research theme for competitive and other funds  (4):
  • 2021 - 2024 線条体の柔軟な神経活動を制御するメカニズムの解明
  • 2018 - 2021 Non-invasive brain imaging to study mechanisms of pain relief after motor cortex stimulation
  • 2017 - 2020 Analysis of the mechanism of central pain in thalamic pain model of non-human primate
  • 2015 - 2018 Animal model study for mechanisms of central poststroke pain and pain relieving effect with neurostimulation
Papers (16):
  • Dong Dong, Koichi Hosomi, Takeshi Shimizu, Ken-Ichi Okada, Yoshinori Kadono, Nobuhiko Mori, Yuki Hori, Noriaki Yahata, Toshiyuki Hirabayashi, Haruhiko Kishima, et al. Cross-species Convergence of Functional Connectivity Changes in Thalamic Pain across Human Patients and Model Macaques. The journal of pain. 2024. 104661-104661
  • Reiji Tanaka, Kei Watanabe, Takafumi Suzuki, Kae Nakamura, Masaharu Yasuda, Hiroshi Ban, Ken-Ichi Okada, Shigeru Kitazawa. An easy-to-implement, non-invasive head restraint method for monkey fMRI. NeuroImage. 2023. 120479-120479
  • Ken-ichi Okada, Ryuji Takeya, Masaki Tanaka. Neural signals regulating motor synchronization in the primate deep cerebellar nuclei. Nature Communications. 2022. 13. 1
  • Yoshinori Kadono, Keigo Koguchi, Ken-ichi Okada, Koichi Hosomi, Motoki Hiraishi, Takashi Ueguchi, Ikuhiro Kida, Adnan Shah, Guoxiang Liu, Youichi Saitoh. Repetitive transcranial magnetic stimulation restores altered functional connectivity of central poststroke pain model monkeys. Scientific Reports. 2021. 11. 1. 6126-6126
  • Ken-Ichi Okada, Kenichiro Miura, Michiko Fujimoto, Kentaro Morita, Masatoshi Yoshida, Hidenaga Yamamori, Yuka Yasuda, Masao Iwase, Mikio Inagaki, Takashi Shinozaki, et al. Impaired inhibition of return during free-viewing behaviour in patients with schizophrenia. Scientific reports. 2021. 11. 1. 3237-3237
more...
MISC (16):
  • 董 冬, 細見 晃一, 清水 豪士, 岡田 研一, 角野 喜則, 森 信彦, 堀 祐樹, 八幡 憲明, 平林 敏行, 貴島 晴彦, et al. 視床痛における機能結合変化 異種間神経画像研究. 臨床神経生理学. 2023. 51. 5. 547-547
  • 田中真樹, 岡田研一, 亀田将史. 時間の神経科学-時を生み出すこころと脳の仕組み C 時間の心理学と神経科学 同期運動とリズム知覚の神経機構. Clinical Neuroscience. 2023. 41. 8
  • Yasushi Kobayashi, Ken-ichi Okada. The pedunculopontine tegmental nucleus neurons encode predicted reward signal by tonic regular firing and given reward signal phasically. NEUROSCIENCE RESEARCH. 2011. 71. E72-E73
  • Kazuko Hayashi, Kazuko Nakao, Ken-ichi Okada, Yasushi Kobayashi, Kae Nakamura. Neuronal coding of rewarding and aversive stimuli in the primate dorsal raphe nucleus. NEUROSCIENCE RESEARCH. 2010. 68. E404-E404
  • Yasushi Kobayashi, Ken-ichi Okada. The pedunculopontine tegmental nucleus neurons relay predicted and actual reward and context dependent visuomotor information. NEUROSCIENCE RESEARCH. 2010. 68. E72-E72
more...
Books (8):
  • 【神経疾患における時間認知障害】時間知覚と予測の神経機構
    (有)科学評論社 2024
  • Temporal Information Processing in the Cerebellum and Basal Ganglia.
    2024
  • 【時間の神経科学-時を生み出すこころと脳の仕組み】時間の心理学と神経科学 同期運動とリズム知覚の神経機構
    (株)中外医学社 2023
  • Decision Making-意思決定・行動選択の神経科学 意思決定・行動選択の神経科学 ドパミンと報酬の予測誤差
    2014
  • Computation of reward prediction error in the midbrain circuit
    2013
more...
Lectures and oral presentations  (54):
  • 視床痛における機能結合変化:異種間神経画像研究
    (第53回日本臨床神経生理学会学術大会 2023)
  • 視床痛における機能結合変化 異種間神経画像研究
    (臨床神経生理学 2023)
  • 皮質-線条体経路の信号伝達はサルの適応行動に伴い柔軟に変化する
    (第46回日本神経科学大会 2023)
  • リズミカルな視覚刺激の時間予測に関わる小脳プルキンエ細胞の活動
    (第46回日本神経科学大会 2023)
  • 小脳は行動エラーに関連した信号を内側前頭葉に送る
    (第46回日本神経科学大会 2023)
more...
Education (2):
  • 2003 - 2009 Osaka University
  • 1999 - 2003 Yokohama City University
Professional career (1):
  • 理学博士 (大阪大学)
Work history (5):
  • 2024/04 - 現在 Hokkaido University
  • 2020/10 - 2024/03 Hokkaido University
  • 2019/04 - 2020/09 Osaka University
  • 2016/04 - 2019/03 Osaka University
  • 2009/10 - 2016/03 Osaka University Graduate School of Frontier Biosciences
Awards (2):
  • 2011/06 - Motor Control研究会 優秀発表賞 サル脚橋被蓋核ニューロンの周期発火とサッカード抑制応答
  • 2010/09 - Outstanding Paper Award Different Pedunculopontine Tegmental Neurons Signal Predicted and Actual Task Rewards.
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