Researchers Information System

日本語に切り替えるswitch to english

Mori, Yoshifumi

Graduate School of Medicine, Medicine Assistant Professor

Mori, Yoshifumi
list
    Last Updated :2025/05/27

    Basic Information

    Faculty

    • 医学部

    Academic Degree

    • 博士(医学)(京都大学)

    Research History

    • From Nov. 2021, To Present
      京都大学大学院医学研究科, 脳統合イメージング分野, 助教

    ID,URL

    researchmap URL

    list
      Last Updated :2025/05/27

      Research

      Research Topics, Overview of the research

      • Research Topics

        Dissociative Disorder, Neuroanatomy

      Research Interests

      • Imaging
      • Dissociative disorder
      • Neuroanatomy

      Research Areas

      • Life sciences, Psychiatry, Dissociative disorder, Dissociation
      • Life sciences, Neuroscience - general, Imaging, Fibre Photometry, Neuroanatomy

      Papers

      • Cdc42 is required for male germline niche development in mice.
        Yoshifumi Mori; Seiji Takashima; Mito Kanatsu-Shinohara; Zheng Yi; Takashi Shinohara
        Cell reports, 17 Aug. 2021, Peer-reviewed, Lead author
      • OGG1 protects mouse spermatogonial stem cells from reactive oxygen species in culture†.
        Yoshifumi Mori; Narumi Ogonuki; Ayumi Hasegawa; Mito Kanatsu-Shinohara; Atsuo Ogura; Yufeng Wang; John R McCarrey; Takashi Shinohara
        Biology of reproduction, 11 Mar. 2021, Peer-reviewed, Lead author
      • ROS amplification drives mouse spermatogonial stem cell self-renewal.
        Hiroko Morimoto; Mito Kanastu-Shinohara; Narumi Ogonuki; Satoshi Kamimura; Atsuo Ogura; Chihiro Yabe-Nishimura; Yoshifumi Mori; Takeshi Morimoto; Satoshi Watanabe; Kinya Otsu; Takuya Yamamoto; Takashi Shinohara
        Life science alliance, Apr. 2019, Peer-reviewed
      • Enrichment of mouse spermatogonial stem cells based on aldehyde dehydrogenase activity.
        Mito Kanatsu-Shinohara; Yoshifumi Mori; Takashi Shinohara
        Biology of reproduction, Dec. 2013, Peer-reviewed
      • Insufficient ability of Rac1b to perturb cystogenesis.
        Yoshifumi Mori; Shunsuke Yagi; Atsuro Sakurai; Michiyuki Matsuda; Etsuko Kiyokawa
        Small GTPases 4(1) 9 - 15, Jan. 2013, Peer-reviewed, Lead author

      Presentations

      • MR Spectroscopy Reveals the Correlation between Dissociation Proneness and Neurotransmitter Concentration in the Anterior and Posterior Cingulate Cortices.
        Yoshifumi Mori
        The 11th World Congress of Neuroscience (IBRO 2023), 12 Sep. 2023
      • A psychotherapy to cure childhood trauma called Brainspotting (BSP)
        Yoshifumi Mori; Karin Kato; Takanobu Suzuki; Tatsuya Yamashita
        The 11th Congress of The Asian Society for Child and Adolescent Psychiatry and Allied Professions, 26 May 2023
      • 深部灰白質および白質における加齢に伴う T1/T2 値 変化
        吉永健二; 森圭史; 東口大樹; 花川隆
        第36回日本大脳基底核研究会シンポジウム, 20 Aug. 2022
      • Macroscopic and microscopic observation of doperminergic neurons in the midbrain
        Yoshifumi Mori; Kenji Yoshinaga; Takashi Hanakawa
        The 4th general meeting of Grant-in-Aid for Scientific Research on Innovative Area "Hyper-adaptability", 20 Jul. 2022
      • Identification of brain area engaged in recognising overlapping figures
        Kaho Nakahara; Yoshifumi Mori; Kenji Yoshinaga; Takashi Hanakawa
        Meeting for kokoro researchers, 16 Jul. 2022
      • Anti-oxidant capacity of spermatogonial stem cells.
        Yoshifumi Mori; Takashi Shinohara
        SY-Stem Symposium, 22 Mar. 2019

      Books and Other Publications

      • Robbins Basic Pathology
        Kumar, Vinay; Abbas, Abul K; Aster, Jon C; Robbins; Stanley L; Stanley Leonard; Shinya Toyokuni; Masahide Takahashi, Others, Chapter 14 Oral Cavity and Gastrointestinal Tract.
        エルゼビア・ジャパン,丸善出版 (発売), Aug. 2014

      External funds: Kakenhi

      • Simultaneous observation of macroscopic and microscopic neural plasticity using a new imaging technique
        Grant-in-Aid for Early-Career Scientists
        Basic Section 44040:Morphology and anatomical structure-related
        Kyoto University
        森 圭史
        From 01 Apr. 2023, To 31 Mar. 2026, Granted
        神経可塑性;蛍光イメージング;MRI;ファイバーフォトメトリー;オペラント学習

      ページ上部へ戻る