Rchr
J-GLOBAL ID:201601001966086360   Update date: Sep. 19, 2024

Yasuda Kenji

ヤスダ ケンジ | Yasuda Kenji
Affiliation and department:
Research field  (3): Bio-, chemical, and soft-matter physics ,  Nanobioscience ,  Biophysics
Research theme for competitive and other funds  (8):
  • 2017 - 2022 血中がん細胞を無染色識別する「イメージング・バイオマーカー」解析技術の開発
  • 2009 - 2011 Analysis of propagation manners of paramyxoviruses in neural cells.
  • 2004 - 2007 Development of On-chip Cellomoics Analysis System for Studies on "Community Effect of Cells"
  • 2004 - 2006 Mechanisms underlying integration of synaptic plasticity in neuronal networks
  • 1999 - 2003 Study of Life Science as Complex Systems
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Papers (332):
  • Dan Horonushi, Amane Yoshida, Yoshiki Nakata, Mitsuru Sentoku, Yuya Furumoto, Toshiki Azuma, Souta Suzuki, Maiha Ando, Kenji Yasuda. Membrane backtracking at the maximum capacity of non-digestible antigen phagocytosis in macrophages. Biophysical Journal. 2023. 122. 13. 2707-2726
  • Kazufumi Sakamoto, Suguru Matsumoto, Nanami Abe, Mitsuru Sentoku, Kenji Yasuda. Importance of Spatial Arrangement of Cardiomyocyte Network for Precise and Stable On-Chip Predictive Cardiotoxicity Measurement. Micromachines. 2023. 14. 4. 854-854
  • Dan Horonushi, Yuya Furumoto, Yoshiki Nakata, Toshiki Azuma, Amane Yoshida, Kenji Yasuda. On-Chip Free-Flow Measurement Revealed Possible Depletion of Macrophages by Indigestible PM2.5 within a Few Hours by the Fastest Intervals of Serial Phagocytosis. Micromachines. 2023. 14. 1
  • Toshinosuke Akimoto, Kenji Yasuda. Content Size-Dependent Alginate Microcapsule Formation Using Centrifugation to Eliminate Empty Microcapsules for On-Chip Imaging Cell Sorter Application. Micromachines. 2023. 14. 1
  • Mitsuru Sentoku, Kento Iida, Hiromichi Hashimoto, Kenji Yasuda. Dominant geometrical factors of collective cell migration in flexible 3D gelatin tube structures. Biophysical Reports. 2022. 2. 3
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MISC (88):
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Patents (97):
Books (25):
  • Biomedical Photonics Handbook
    CRC Press 2014
  • 創薬研究ツール
    メディカルドゥ 2014 ISBN:9784944157716
  • 再生医療製品の許認可と組織工学の新しい試み(監修 岩田博夫、松岡厚子、岸田晶夫)
    シーエムシー出版 2012 ISBN:9784781305837
  • ものづくり技術からみる再生医療-細胞研究・創薬・治療-(監修 田畑泰彦)
    シーエムシー出版 2011 ISBN:9784781304724
  • High Resolution Microbial Single Cell Analytics (Editer: Müller, Susann; Bley, Thomas)
    Springer 2010 ISBN:9783642168864
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Lectures and oral presentations  (559):
  • Development of sprouting vascular endothelial cell collection method using flexible design of Matrigel for expression analysis
    (第56回日本生物物理学会年会 2018)
  • Selective digestion of Ba2+/Ca2+ alginate microdroplets for single-cell-analysis
    (第56回日本生物物理学会年会 2018)
  • Development of size filtration-imaging cell sorter for real time selective collection of circulating tumor cells (CTCs) in blood
    (第56回日本生物物理学会年会 2018)
  • Quantitative evaluation of preciseness in design copy in microfabrication procedures of circulating tumor cell cluster size-filtration
    (第56回日本生物物理学会年会 2018)
  • Development of a method to track conductions in cardiomyocyte network with a multi-electrode system
    (第56回日本生物物理学会年会 2018)
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Education (2):
  • - 1992 Waseda Univ.
  • - 1990 Waseda Univ. Depeartment of Physics
Professional career (1):
  • Ph.D.
Work history (5):
  • 2016/04 - Waseda University Professor
  • 2006/04 - 2016/03 Tokyo Medical and Dental Univ. Professor
  • 2006/04 - 2006/09 The University of Tokyo Professor
  • 1999/04 - 2006/03 The University of Tokyo Associate Prof.
  • 1992/04 - 1999/03 Hitachi Ltd. Advanced Research Lab. Research Scientist
Awards (6):
  • 2017/10 - 独立行政法人 日本学術振興会 平成28年度特別研究員等審査会専門委員(書面担当)及び国際事業委員会書面審査員 表彰
  • 2013/10 - 独立行政法人 日本学術振興会 平成25年度「科研費」有意義な審査意見を付した審査委員 表彰
  • 2012/06 - 日本サイトメトリー学会 日本サイトメトリー学会学術奨励賞 平成23年度Cytometry Research最優秀論文 CTC計測装置技術の現状と次世代 CTC装置 技術の展望
  • 2010/11 - 応用物理学会 MNC 2009 Outstanding Paper Award Non-amplified quantitative detection of nucleic acid sequences using a gold nanoparticle probe set and field emission scanning electron microscopy
  • 2005/10 - 応用物理学会 MNC 2004 Award for Most Impressive Presentation Single-Cell-Based Electrophysiological Measurement of a Topographically Controlle Neuronal Network Using Agarose Architecture with a Multi-Electrode Array
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Association Membership(s) (5):
Acoustical Society of America ,  Biophysical Society ,  The Japan Society of Applied Physics ,  The Physical Society of Japan ,  The Biophysical Society of Japan
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