Hirata Hiroaki | Dept. Molecular Physiology Nips. Nins:sorst Cell-mechanosensing Project Jst
スポンサーリンク
概要
関連著者
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Hirata Hiroaki
Cell Mechanosensing Project, SORST, Japan Science and Technology Agency
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Hirata Hiroaki
Dept. Molecular Physiology Nips. Nins:sorst Cell-mechanosensing Project Jst
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Hirata Hiroaki
Physics Department Graduate School Of Science Tohoku University
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曽我部 正博
名古屋大・医
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辰巳 仁史
Dept. Physiol. Grad. Sch. Med. Univ. Nagoya
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辰巳 仁史
名古屋大学大学院・医学研究科・細胞生物物理
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辰巳 仁史
名古屋大学大学院医学研究科第2生理
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曽我部 正博
名古屋大学大学院・医学研究科
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Sokabe M
Department Of Physiology Nagoya University School Of Medicine
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曽我部 正博
名大・医・第二生理
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曽我部 正博
名大
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曾我部 正博
名古屋大学大学院医学系研究科
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曽我部 正博
名古屋大学大学院医学系研究科
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曽我部 正博
名古屋大学大学院医学系研究科細胞情報医学専攻・細胞生物物理学分野
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曽我部 正博
名古屋大・医:jst
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Sokabe M
Nagoya Univ. School Of Medicine Nagoya Jpn
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Sokabe Masahiro
Dept Of Physiology Nagoya University Graduate School Of Medicine
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Tatsumi Hitoshi
Dept. Physiol., Grad. Sch. Med., Univ. Nagoya
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Tatsumi Hitoshi
Dept. Physiol. Nagoya Univ. Grad. Sch. Med.
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Tatsumi Hitoshi
Dept. Of Physiology Nagoya University Graduate School Of Medicine
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Tatsumi Hitoshi
Dept. of Physiol., Nagoya Univ. Grad. Sch. of Med.
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Sokabe Masahiro
Cell Mechanosensing Project, SORST, Japan Science and Technology Agency
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SOKABE Masahiro
Department of Physiology, Nagoya University School of Medicine
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Hirata Hiroaki
Department Of Orthopedic Surgery Kobe University Graduate School Of Medicine
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Kiyoshima Daisuke
Nagoya University Graduate School of Medicine
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Hirata Hiroaki
Cell Mechanosensing Project Sorst Japan Science And Technology Agency
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Tatsumi Hitoshi
Department Of Autonomic Physiology Medical Research Institute Tokyo Medical And Dental University
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Sokabe Masahiro
Department Of Physiology Nagoya University
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Sokabe Masahiro
Cell Mechanosensing Project Sorst Jst:dept. Of Physiology Nagoya University Graduate School Of Medic
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Sokabe Masahiro
Department Of Behaviorology Faculty Of Human Sciences Osaka University
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Tatsumi Hitoshi
Dept Physiology, Graduate School of Medicine, Nagoya Univ
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Kiyoshima Daisuke
Dept. Physiol., Grad. Sch. Med., Univ. Nagoya
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Hirata Hiroaki
Dept. Molecular Physiology, NIPS. NINS
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Sokabe Masahiro
Dept. Physiol., Grad. Sch. Med., Univ. Nagoya
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Hirata Hiroaki
ICORP SORST, Cell Mechanosensing Project, Japan Science and Technology Agency
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Sokabe Masahiro
ICORP SORST, Cell Mechanosensing Project, Japan Science and Technology Agency
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Sokabe Masahiro
Nagoya University
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Miyata Hidetake
Physics Department, tohoku University
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Miyata Hidetake
Physics Department Graduate School Of Science Tohoku University
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OHKI Kazuo
Physics Department, Graduate School of Science, Tohoku University
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Ohki K
Physics Department Graduate School Of Science Tohoku University
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Hirata Hiroaki
Nagoya University Graduate School of Medicine
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Tatsumi Hitoshi
Nagoya University Graduate School of Medicine
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Tatsumi Hitoshi
Dept Of Physiology Nagoya University Graduate School Of Medicine
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Sokabe Masahiro
Dept. Physiol. Nagoya Univ. Grad. Sch. Med.
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Sokabe Masahiro
Icorp Sorst Cell-mechanosensing Jst:dept. Physiol. Nagoya Univ. Graduate School Of Medical.:national
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Ohki Kazuo
Physics Department Graduate School Of Science Tohoku University
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Sokabe Masahiro
Icorp Cell Mechanosensing Japan Science And Technology Agency (jst)
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Tatsumi Hitoshi
Nagoya Univ Sch Med
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Sokabe Masahiro
Dept. Physiol, Nagoya Univ.
著作論文
- 3P-182 C端LIM領域がzyxinの接着斑への機械的力に依存した局在の責任部位である(細胞生物学的課題(3),第46回日本生物物理学会年会)
- 3P-168 接着構造の試験管内再構成モデルの開発 : 力刺激による接着関連タンパク質の集積(細胞生物学的課題(3),第46回日本生物物理学会年会)
- 1P327 Mechanical force-dependent zyxin accumulation leads to actin polymerization at focal adhesions(11. Morphogenesis and cell adhesion,Poster Session,Abstract,Meeting Program of EABS & BSJ 2006)
- Change of the Topography of Ventral Cell Surface during Spreading of Fibroblasts as Revealed by Evanescent Wave-Excited Fluorescence Microscopy : Effect of Contractility and Microtubule Integrity(Bioengineering)
- 3P-163 試験管再構成モデルを用いた力刺激による接着関連タンパク質の集積(細胞生物的課題(接着,運動,骨格,伝達,膜),第47回日本生物物理学会年会)
- 1P-152 アクチン調節タンパク質zyxinのストレスファイバーへの張力依存的会合(細胞生物的課題(接着,運動,骨格,伝達,膜),第47回日本生物物理学会年会)
- Tension-Dependent Formation of Stress Fibers in Fibroblasts : A Study Using Semi-Intact Cells
- Formation of Stress Fibers from Pre-Existing Actin Filaments driven by Mechanical Stress in Semi-Intact Cells(Micro- and Nano-biomechanics)