Rchr
J-GLOBAL ID:201301001700086892
Update date: Dec. 16, 2024 Ishida Tadashi
イシダ タダシ | Ishida Tadashi
Affiliation and department: Job title:
Associate Professor
Research field (2):
Machine elements and tribology
, Design engineering
Research theme for competitive and other funds (10): - 2021 - 2024 細胞膜の局所ナノスーツ膜化による細胞内外ナノ観察のためのMEMS液体セル
- 2021 - 2024 難培養細菌の特性移植のためのマイクロ流路システムの開発
- 2020 - 2023 High-quality Cell Construction System by Integrating massively parallel intranuclear delivery and screening technology
- 2019 - 2022 生体分子の分子認識プロセスの時空間的スケールギャップ問題の解決のための基礎研究
- 2018 - 2021 High functional microfluidic liquid cell for dynamic visualization of inorganic elements in bacteria at high resolution
- 2018 - 2020 Gene Manipulation of Microorganism inside droplets caused by evolution process
- 2016 - 2020 High efficiency automatic screening for cancer cell binding peptides and its application to various conditions
- 2015 - 2018 MEMS for electron microscopy to study nanobiology and its application to observation of bacterial dynamics
- 2014 - 2015 Challenge to artificial transformation of cyanobacteria into chloroplasts by adaption inside microscaled space
- 2011 - 2012 Understanding Mechanism of Super-Lubrication Driven by Graphite/Fullerene Composite using in-situ TEM
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Papers (57): -
Satoru Kuriu, Naoyuki Yamamoto, Tadashi Ishida. Development of a microfluidic device to observe dynamic flow around the villi generated by deformation of small intestinal tissue. Lab on a Chip. 2023. 23. 12. 2729-2737
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Gai Yamauchi, Tadashi Ishida. Hydraulic microactuator with coarse/fine drive-switching mechanism. Sensors and Actuators A: Physical. 2021. 332
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Maho Kaminaga, Tadashi Ishida, Toru Omata. Microvalve with Trapezoid-Shaped Cross-Section for Deep Microchannels. Micromachines. 2021
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Satoru Kuriu, Naoyuki Yamamoto, Tadashi Ishida. Microfluidic Device Using Mouse Small Intestinal Tissue for the Observation of Fluidic Behavior in the Lumen. Micromachines. 2021. 12. 6. 692-692
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Satoru Kuriu, Tetsuya Kadonosono, Shinae Kizaka-Kondoh, Tadashi Ishida. Slicing spheroids in microfluidic devices for morphological and immunohistochemical analysis. Micromachines. 2020. 11. 5
more... MISC (56): -
栗生 識, 門之園 哲哉, 近藤 科江, 石田 忠. スフェロイドの三次元的免疫組織学解析を可能とするエポキシ製マイクロ流体デバイス-Epoxy-based microfluidic device for three dimensional immunohistography of spheroid. 「センサ・マイクロマシンと応用システム」シンポジウム論文集 電気学会センサ・マイクロマシン部門 [編]. 2020. 37. 5p
- 栗生識, 石田忠, 小俣透. がん細胞スフェロイド群を用いた抗がん剤ペプチド探索デバイス-流体挙動の観察とスフェロイド群の構築-. 日本機械学会ロボティクス・メカトロニクス講演会講演論文集(CD-ROM). 2018. 2018. ROMBUNNO.1P1-K10
- 石田忠, 池田匡利, 小俣透. がん細胞スフェロイドを対象とした液滴内ペプチド探索のための未付着ペプチドの洗浄デバイス. 日本機械学会ロボティクス・メカトロニクス講演会講演論文集(CD-ROM). 2018. 2018. ROMBUNNO.1P2-M10
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池田 匡利, 石田 忠, 小俣 透. Microfluidic device for efficient washing process in peptide screening using cancer cell spheroids. 「センサ・マイクロマシンと応用システム」シンポジウム論文集 電気学会センサ・マイクロマシン部門 [編]. 2017. 34. 3p
- 池田匡利, 石田忠, 小俣透. スフェロイドを対象としたがん細胞結合ペプチド探索の洗浄過程デバイス. センサ・マイクロマシンと応用システムシンポジウム(CD-ROM). 2017. 34th. ROMBUNNO.01pm4-PS-196
more... Work history (1): - 2011 - The University of Tokyo Institute of Industrial Science
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