Rchr
J-GLOBAL ID:201901013217050901   Update date: Oct. 07, 2024

Masafumi Shimojo

シモジョウ マサフミ | Masafumi Shimojo
Affiliation and department:
Research field  (5): Nervous system function ,  Neuropathology ,  Neuroscience - general ,  Cell biology ,  Molecular biology
Research theme for competitive and other funds  (8):
  • 2024 - 2028 生体脳イメージングを基軸とした回路炎症病態の可視化と制御
  • 2022 - 2026 認知症病態における多感覚情報の統合メカニズム破綻
  • 2021 - 2024 神経回路イメージングによる脳機能理解と病態メカニズム制御
  • 2021 - 2023 炎症病態により誘導される回路再編メカニズムと遺伝学的制御
  • 2018 - 2021 Development of imaging-based early diagnosis biomarkers of neurodegenerative disorders
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Papers (23):
  • Rin Yanai, Tomoki T Mitani, Etsuo A Susaki, Takeharu Minamihisamatsu, Masafumi Shimojo, Yuri Saito, Hiroshi Mizuma, Nobuhiro Nitta, Daita Kaneda, Yoshio Hashizume, et al. A novel tauopathy model mimicking molecular and spatial aspects of human tau pathology. Brain Communications. 2024. 6. 5
  • Yumi Matsushita, Kaede Yoshida, Miyuki Yoshiya, Takahiro Shimizu, Satoshi Tsukamoto, Yuichi Takeuchi, Makoto Higuchi, Masafumi Shimojo. TRPC6 is a mechanosensitive channel essential for ultrasound neuromodulation in mammalian brain. 2024
  • Takehiro Kudo, Hiroyuki Takuwa, Manami Takahashi, Takuya Urushihata, Masafumi Shimojo, Kazuaki Sampei, Mitsugu Yamanaka, Yutaka Tomita, Naruhiko Sahara, Tetsuya Suhara, et al. Selective dysfunction of fast-spiking inhibitory interneurons and disruption of perineuronal nets in a tauopathy mouse model. iScience. 2023. 26. 4. 106342-106342
  • Taeko Kimura, Maiko Ono, Chie Seki, Kazuaki Sampei, Masafumi Shimojo, Kazunori Kawamura, Ming-Rong Zhang, Naruhiko Sahara, Yuhei Takado, Makoto Higuchi. A quantitative in vivo imaging platform for tracking pathological tau depositions and resultant neuronal death in a mouse model. European Journal of Nuclear Medicine and Molecular Imaging. 2022. 49. 13. 4298-4311
  • Maiko Ono, Masaaki Komatsu, Bin Ji, Yuhei Takado, Masafumi Shimojo, Takeharu Minamihisamatsu, Eiji Warabi, Toru Yanagawa, Gen Matsumoto, Ichio Aoki, et al. Central role for p62/SQSTM1 in the elimination of toxic tau species in a mouse model of tauopathy. Aging cell. 2022. e13615
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MISC (26):
  • 下條 雅文. 超音波脳神経治療の基礎・前臨床分野の最前線 マウス大脳神経細胞の超音波応答メカニズム. 日本脳神経超音波学会総会・日本栓子検出と治療学会プログラム・抄録集. 2024. 43回・27回. 106-106
  • 横井洸希, 松下有美, 下條雅文, 樋口真人, 今城哉裕, 森田剛. 細胞への最適照射条件検討に資する周波数可変in vitro超音波照射システムの提案. 精密工学会大会学術講演会講演論文集(CD-ROM). 2024. 2024
  • 山崎 友照, 藤永 雅之, 大久保 崇之, 下條 雅文, 小野 麻衣子, 永井 裕司, 小川 政直, 念垣 信樹, 南本 敬史, 樋口 真人, et al. 新規レポーター遺伝子イメージング剤[18F]FE-TMP-d4の小動物を用いた有効性評価. 核医学. 2023. 60. Suppl. S221-S221
  • 矢内凛, 南久松丈晴, 下條雅文, 洲崎悦生, 三谷智樹, 上田泰己, 張明栄, 佐原成彦, 樋口真人. 透明化とPETを用いた新規タウオパチーモデルマウスの全脳3Dイメージング. Dementia Japan. 2023. 37. 4. 682-682
  • 矢内 凜, 南久松 丈晴, 下條 雅文, 樋口 真人, 佐原 成彦. 新規Rosa26-Knockinタウオパチーマウスを用いたミクログリア動態の探索. 老年精神医学雑誌. 2022. 33. 増刊II. 255-255
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Lectures and oral presentations  (23):
  • マウス大脳神経細胞の超音波応答メカニズム
    (日本脳神経超音波学会 2024)
  • Recent Advances in ultrasound technologies for biomedical research
    (日本生理学会 2024)
  • マウス大脳神経細胞の超音波応答メカニズム
    (2024)
  • Ultrasound neuromodulation induces network excitation of cortical neurons through the activation of mechanosensitive channels” Invited Symposium
    (The Korea Society for Therapeutic Ultrasound 2023)
  • PET imaging of animal models for neurological disorders
    (2023)
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Work history (7):
  • 2022/07 - 現在 National Institutes for Quantum and Radiological Science and Technology
  • 2022/04 - National Institutes for Quantum and Radiological Science and Technology Department of Functional Brain Imaging Principal Researcher
  • 2021/04 - National Institutes for Quantum and Radiological Science and Technology Department of Functional Brain Imaging Senior Researcher
  • 2016/04 - National Institutes for Quantum and Radiological Science and Technology Dept. of Functional Brain Imaging Research Researcher
  • 2014/10 - National institute of Radiological Sciences Researcher
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Association Membership(s) (5):
北米神経科学会 ,  日本生理学会 ,  日本分子生物学会 ,  日本神経化学会 ,  THE JAPAN NEUROSCIENCE SOCIETY
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