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Hidetaka Ueno

Showing results (1-10 of 11) with videos related to

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Bioengineering (Basel, Switzerland)|February 23, 2024
Fabrication Method for Shape-Controlled 3D Tissue Using High-Porosity Porous StructureHidetaka Ueno, Shohei Yamamura
Micromachines|February 25, 2022
Novel Quick Cell Patterning Using Light-Responsive Gas-Generating Polymer and Fluorescence MicroscopeHidetaka Ueno, Yoshinori Akagi, Shohei Yamamura
Sensors (Basel, Switzerland)|May 13, 2026
Single-Cell Selective Retrieval Method Using Cone-Shaped Light-Responsive Gas-Generating Polymer Microscaffold Array ChipHidetaka Ueno, Yoshinori Akagi, Shohei Yamamura
Lab on a Chip|March 21, 2022
Selective cell retrieval method using light-responsive gas-generating polymer-based microarraysHidetaka Ueno, Yoshinori Akagi, Shohei Yamamura
Micromachines|December 22, 2018
Integration Method of Microchannel and Vertical Micromesh Structure for Three-Dimensional Cell Culture Using Inclined Exposure and Inclined Oxygen AshingHidetaka Ueno, Kou Yamada, Takaaki Suzuki
Micromachines|January 8, 2020
Micropatterning Method for Porous Materials Using the Difference of the Glass Transition Temperature between Exposed and Unexposed Areas of a Thick-PhotoresistHidetaka Ueno, Kiichi Sato, Kou Yamada, et al.
Microphysiological Systems|June 16, 2021
Body-in-a-Cube: a microphysiological system for multi-tissue co-culture with near-physiological amounts of blood surrogateLongyi Chen, Yang Yang, Hidetaka Ueno, et al.
Micromachines|June 10, 2020
Cell Culture on Low-Fluorescence and High-Resolution PhotoresistHidetaka Ueno, Katsuya Maruo, Masatoshi Inoue, et al.
Lab on a Chip|June 23, 2016
Modular, pumpless body-on-a-chip platform for the co-culture of GI tract epithelium and 3D primary liver tissueMandy B Esch, Hidetaka Ueno, Dawn R Applegate, et al.
Micromachines|February 25, 2023
Single-Cell Microarray Chip with Inverse-Tapered Wells to Maintain High Ratio of Cell TrappingRyota Sano, Kentaro Koyama, Narumi Fukuoka, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Bioengineering (Basel, Switzerland)|February 23, 2024
Fabrication Method for Shape-Controlled 3D Tissue Using High-Porosity Porous StructureHidetaka Ueno, Shohei Yamamura
Micromachines|February 25, 2022
Novel Quick Cell Patterning Using Light-Responsive Gas-Generating Polymer and Fluorescence MicroscopeHidetaka Ueno, Yoshinori Akagi, Shohei Yamamura
Sensors (Basel, Switzerland)|May 13, 2026
Single-Cell Selective Retrieval Method Using Cone-Shaped Light-Responsive Gas-Generating Polymer Microscaffold Array ChipHidetaka Ueno, Yoshinori Akagi, Shohei Yamamura
Lab on a Chip|March 21, 2022
Selective cell retrieval method using light-responsive gas-generating polymer-based microarraysHidetaka Ueno, Yoshinori Akagi, Shohei Yamamura
Micromachines|December 22, 2018
Integration Method of Microchannel and Vertical Micromesh Structure for Three-Dimensional Cell Culture Using Inclined Exposure and Inclined Oxygen AshingHidetaka Ueno, Kou Yamada, Takaaki Suzuki
Micromachines|January 8, 2020
Micropatterning Method for Porous Materials Using the Difference of the Glass Transition Temperature between Exposed and Unexposed Areas of a Thick-PhotoresistHidetaka Ueno, Kiichi Sato, Kou Yamada, et al.
Microphysiological Systems|June 16, 2021
Body-in-a-Cube: a microphysiological system for multi-tissue co-culture with near-physiological amounts of blood surrogateLongyi Chen, Yang Yang, Hidetaka Ueno, et al.
Micromachines|June 10, 2020
Cell Culture on Low-Fluorescence and High-Resolution PhotoresistHidetaka Ueno, Katsuya Maruo, Masatoshi Inoue, et al.
Lab on a Chip|June 23, 2016
Modular, pumpless body-on-a-chip platform for the co-culture of GI tract epithelium and 3D primary liver tissueMandy B Esch, Hidetaka Ueno, Dawn R Applegate, et al.
Micromachines|February 25, 2023
Single-Cell Microarray Chip with Inverse-Tapered Wells to Maintain High Ratio of Cell TrappingRyota Sano, Kentaro Koyama, Narumi Fukuoka, et al.
Pageof 2