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Masaya Hagiwara

Showing results (1-10 of 17) with videos related to

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Biochemical and Biophysical Research Communications|November 17, 2018
Epidermal growth factor induced macropinocytosis directs branch formation of lung epithelial cellsMasaya Hagiwara, Ikuhiko Nakase
Development, Growth & Differentiation|January 12, 2020
Engineering approaches to control and design the in vitro environment towards the reconstruction of organsMasaya Hagiwara, Isabel Koh
Communications Biology|February 28, 2024
Modular tissue-in-a-CUBE platform to model blood-brain barrier (BBB) and brain interactionIsabel Koh, Masaya Hagiwara
Communications Biology|March 22, 2023
Gradient to sectioning CUBE workflow for the generation and imaging of organoids with localized differentiationIsabel Koh, Masaya Hagiwara
Micromachines|February 25, 2022
3D Culture Platform for Enabling Large-Scale Imaging and Control of Cell Distribution into Complex Shapes by Combining 3D Printing with a Cube DeviceAtsushi Takano, Isabel Koh, Masaya Hagiwara
Journal of Visualized Experiments : Jove|April 9, 2019
Initial 3D Cell Cluster Control in a Hybrid Gel Cube Device for Repeatable Pattern FormationsMasaya Hagiwara, Rina Nobata, Tomohiro Kawahara
Advanced Healthcare Materials|April 30, 2016
Tissue in Cube: In Vitro 3D Culturing Platform with Hybrid Gel Cubes for Multidirectional ObservationsMasaya Hagiwara, Tomohiro Kawahara, Rina Nobata
Tissue Engineering. Part C, Methods|May 5, 2017
In Vitro Experimental Model for the Long-Term Analysis of Cellular Dynamics During Bronchial Tree Development from Lung Epithelial CellsMasaya Hagiwara, Naomichi Maruta, Moegi Marumoto
Integrative Biology : Quantitative Biosciences From Nano to Macro|April 25, 2018
High repeatability from 3D experimental platform for quantitative analysis of cellular branch pattern formationsMasaya Hagiwara, Rina Nobata, Tomohiro Kawahara
Scientific Reports|January 28, 2015
In vitro reconstruction of branched tubular structures from lung epithelial cells in high cell concentration gradient environmentMasaya Hagiwara, Fei Peng, Chih-Ming Ho
Pageof 2

Showing results (1-10 of 17) with videos related to

Sort By:
Pageof 2
Biochemical and Biophysical Research Communications|November 17, 2018
Epidermal growth factor induced macropinocytosis directs branch formation of lung epithelial cellsMasaya Hagiwara, Ikuhiko Nakase
Development, Growth & Differentiation|January 12, 2020
Engineering approaches to control and design the in vitro environment towards the reconstruction of organsMasaya Hagiwara, Isabel Koh
Communications Biology|February 28, 2024
Modular tissue-in-a-CUBE platform to model blood-brain barrier (BBB) and brain interactionIsabel Koh, Masaya Hagiwara
Communications Biology|March 22, 2023
Gradient to sectioning CUBE workflow for the generation and imaging of organoids with localized differentiationIsabel Koh, Masaya Hagiwara
Micromachines|February 25, 2022
3D Culture Platform for Enabling Large-Scale Imaging and Control of Cell Distribution into Complex Shapes by Combining 3D Printing with a Cube DeviceAtsushi Takano, Isabel Koh, Masaya Hagiwara
Journal of Visualized Experiments : Jove|April 9, 2019
Initial 3D Cell Cluster Control in a Hybrid Gel Cube Device for Repeatable Pattern FormationsMasaya Hagiwara, Rina Nobata, Tomohiro Kawahara
Advanced Healthcare Materials|April 30, 2016
Tissue in Cube: In Vitro 3D Culturing Platform with Hybrid Gel Cubes for Multidirectional ObservationsMasaya Hagiwara, Tomohiro Kawahara, Rina Nobata
Tissue Engineering. Part C, Methods|May 5, 2017
In Vitro Experimental Model for the Long-Term Analysis of Cellular Dynamics During Bronchial Tree Development from Lung Epithelial CellsMasaya Hagiwara, Naomichi Maruta, Moegi Marumoto
Integrative Biology : Quantitative Biosciences From Nano to Macro|April 25, 2018
High repeatability from 3D experimental platform for quantitative analysis of cellular branch pattern formationsMasaya Hagiwara, Rina Nobata, Tomohiro Kawahara
Scientific Reports|January 28, 2015
In vitro reconstruction of branched tubular structures from lung epithelial cells in high cell concentration gradient environmentMasaya Hagiwara, Fei Peng, Chih-Ming Ho
Pageof 2