Rchr
J-GLOBAL ID:200901019333717973   Update date: Nov. 14, 2024

Shibata Tatsuo

シバタ タツオ | Shibata Tatsuo
Affiliation and department:
Job title: Assistant Professor
Homepage URL  (1): http://www.qbic.riken.jp/phb/
Research field  (3): Bio-, chemical, and soft-matter physics ,  Biophysics ,  Developmental biology
Research keywords  (5): developmental bioogy ,  nonlinear science ,  physical biology ,  theoretical biology ,  quantitative biology
Research theme for competitive and other funds  (12):
  • 2022 - 2027 Mechanical self-transformation of living systems
  • 2022 - 2027 Theoretical study of self-organization induced by mechanochemical feedback
  • 2021 - 2025 微小管メカニクスが誘導する細胞極性パターニング
  • 2019 - 2024 シグナルと力のゆらぎが上皮組織の可塑性を支配するしくみ
  • 2015 - 2018 Mechanism of apical-basal polarity formation in epithelial cells
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Papers (100):
  • Sayaka Sekine, Mitsusuke Tarama, Housei Wada, Mustafa M. Sami, Tatsuo Shibata, Shigeo Hayashi. Emergence of periodic circumferential actin cables from the anisotropic fusion of actin nanoclusters during tubulogenesis. Nature Communications. 2024. 15. 1
  • Masayuki Hayakawa, Hidekazu Kuwayama, Tatsuo Shibata. A Mutant of Dictyostelium discoideum, KI-Cell, as a Model of Collective Cell Migration Independent of Chemotaxis. Methods in molecular biology (Clifton, N.J.). 2024. 2828. 37-43
  • Biplab Bhattacherjee, Masayuki Hayakawa, Tatsuo Shibata. Structure formation induced by non-reciprocal cell-cell interactions in a multicellular system. Soft Matter. 2024. 20. 12. 2739-2749
  • Takaki Yamamoto, Tomoki Ishibashi, Yuko Mimori-Kiyosue, Sylvain Hiver, Naoko Tokushige, Mitsusuke Tarama, Masatoshi Takeichi, Tatsuo Shibata. Epithelial cell chirality emerges through the dynamic concentric pattern of actomyosin cytoskeleton. 2023
  • Mitsusuke Tarama, Tatsuo Shibata. Pattern formation and the mechanics of a motor-driven filamentous system confined by rigid membranes. Physical Review Research. 2022. 4. 4
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MISC (35):
  • 京極博久, 多羅間充輔, 三品達平, 原田哲仁, 中川れい子, 大川恭行, 柴田達夫, 北島智也. Cytoplasmic competition between separate parental pronuclei in zygotes. 日本分子生物学会年会プログラム・要旨集(Web). 2023. 46th
  • 京極博久, 京極博久, 多羅間充輔, 三品達平, 柴田達夫, 北島智也. Why zygotes have two different sized pronuclei?. 日本分子生物学会年会プログラム・要旨集(Web). 2022. 45th
  • 京極博久, 京極博久, 多羅間充輔, 三品達平, 柴田達夫, 北島智也. 受精卵における雌雄前核のサイズ差が適切なヒストンメチル化修飾を制御している. 日本繁殖生物学会講演要旨集(Web). 2021. 114th
  • 多羅間充輔, 京極博久, 京極博久, 柴田達夫, 北島智也. Epigenetic maintenance controlled by the size of competitive pronuclei in zygotes. 日本物理学会講演概要集(CD-ROM). 2021. 76. 2
  • 森田梨津子, 三千典子, 佐々木弘子, 林哲太郎, 梅田茉奈, 芳村美佳, 山本尚貴, 柴田達夫, 阿部高也, 清成寛, et al. 毛包幹細胞の発生起源と誘導過程. 日本分子生物学会年会プログラム・要旨集(Web). 2020. 43rd
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Education (3):
  • 1994 - 1999 The University of Tokyo
  • - 1999 The University of Tokyo Graduate School, Division of General Culture
  • 1990 - 1994 Kyoto University Faculty of Science
Professional career (1):
  • 博士(学術) (東京大学大学院総合文化研究科)
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