Rchr
J-GLOBAL ID:200901047004111715   Update date: May. 28, 2024

Tsubota Ken-ichi

ツボタ ケンイチ | Tsubota Ken-ichi
Affiliation and department:
Job title: Chiba University
Homepage URL  (1): http://www.em.eng.chiba-u.jp/~bml/index.html
Research field  (5): Fluid engineering ,  Machine materials and mechanics ,  Computational science ,  Biomaterials ,  Biomedical engineering
Research keywords  (1): バイオメカニクス 生体力学 生体組織 細胞 材料力学 流体力学
Research theme for competitive and other funds  (19):
  • 2023 - 2026 Blood flow biomechanics for understanding thrombosis and antithrombotic efficacy toward innovative diagnosis, prevention and treatment
  • 2020 - 2023 バイオメカニクスモデリングに基づく腎機能と慢性腎不全機序の理解
  • 2015 - 2019 Rheology in network microchannel based on biomechanics of blood cells and its application to acute circulatory failure
  • 2014 - 2017 Analysis of urethral function through hydrodynamic computation of urine flow focused on focal therapy for voiding dysfunction.
  • 2013 - 2015 Prediction of Thrombus Development and Antithrombotic Therapy Plan Based on Biomechanics
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Papers (91):
  • Wei Deng, Ken-ichi Tsubota. Numerical simulation of the vascular structure dependence of blood flow in the kidney. Medical Engineering & Physics. 2022. 104. 103809-103809
  • XinYue Liu, Keni-chi Tsubota, Yi Yu, Wang Xi, XiaoBo Gong. A numerical method to predict the membrane tension distribution of spreading cells based on the reconstruction of focal adhesions. Science China Physics, Mechanics & Astronomy. 2022. 65. 6. 264612
  • Wei Deng, Ken-ichi Tsubota. Numerical Modeling and Simulation of Blood Flow in a Rat Kidney: Coupling of the Myogenic Response and the Vascular Structure. Processes. 2022. 10. 5. 1005-1005
  • Ken-ichi Tsubota, Kazuki Namioka. Blood cell distribution in small and large vessels: Effects of wall and rotating motion of red blood cells. Journal of Biomechanics. 2022. 137. 111081-111081
  • Ken-ichi Tsubota, Hidetaka Sonobe, Koichi Sughimoto, Hao Liu. Blood Flow Simulation to Determine the Risk of Thrombosis in the Fontan Circulation: Comparison between Atriopulmonary and Total Cavopulmonary Connections. Fluids. 2022. 7. 4. 138-138
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MISC (237):
  • 坪田健一. 血球バイオメカニクスに基づく血流シミュレーション (hp230232). HPCIシステム利用研究課題 利用報告書. 2024
  • 坪田健一. 血球バイオメカニクスに基づく血流シミュレーション (hp220336). HPCIシステム利用研究課題 利用報告書. 2023
  • HIRAHARA Yoshiki, YAMAMOTO Sota, TSUBOTA Ken-ichi. 2C23 DEVELOPMENT OF LIVER INJURY ANALYSIS MODEL BY PARTICLE METHOD. 2016. 2016. 28. "2C23-1"-"2C23-5"
  • OBINATA Hiroyuki, TSUBOTA Ken-ichi. 2E34 Particle Method Computer Simulation of Thrombus Formation by High Shear Rate : Effects of Model Parameters. 2016. 2016. 28. "2E34-1"-"2E34-4"
  • ENDO Yutaka, SUGHIMOTO Koichi, LIU Hao, TSUBOTA Ken-ichi. 1E15 Computer Simulation of Thrombus Formation and Medicinal Effect Using Particle Method : Comparison with Experimental Data. 2016. 2016. 28. "1E15-1"-"1E15-4"
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Lectures and oral presentations  (9):
  • 血液凝固の運動学的機構の計算機シミュレーション(流れと血球運動の影響)
    (日本機械学会第 36 回バイオエンジニアリング講演会 2024)
  • ヘマトクリットが壁面せん断応力分布に与える影響の粒子法シミュレーション
    (日本機械学会第 36 回バイオエンジニアリング講演会 2024)
  • 移流反応拡散に基づく血栓形成の計算機シミュレーション
    (日本機械学会第 36 回バイオエンジニアリング講演会 2024)
  • 赤血球が微小血管網の壁面せん断応力に与える影響の粒子法シミュレーション
    (日本機械学会第 34 回バイオフロンティア講演会 2023)
  • 狭窄管内の壁面せん断速度分布に赤血球が与える影響の計算機シミュレーション
    (日本機械学会第 34 回バイオフロンティア講演会 2023)
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Professional career (2):
  • 修士(工学) (神戸大学)
  • 博士(工学) (神戸大学)
Awards (9):
  • 2023/11 - The 12th Asian-Pacific Conference on Biomechanics Best Presenter Award
  • 2020/04 - The Japan Society of Mechanical Engineers JSME Medal for Outstanding Paper Three-dimensional deformation mode of multicellular epithelial tube under tension and compression tests
  • 2019/03 - Journal of Biomechanical Science and Engineering JBSE Awards Paper of the Year 2018 Three-dimensional deformation mode of multicellular epithelial tube under tension and compression tests
  • 2013/09 - Chiba University Chiba University Advanced Science Prize Computational Biomechanics Model of Function and Adaptation of Living Tissue
  • 2009 - 日本機械学会バイオエンジニアリング部門第17回瀬口賞
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Association Membership(s) (2):
日本臨床バイオメカニクス学会 ,  日本機械学会
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