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Division of Mathematics and Physical Sciences
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Research Center for Applied Sciences
Tung, Yi-Chung
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p.-l. ko
Results 1-11 of 11 (Search time: 0.002 seconds).
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1
2022
Revealing Anisotropic Elasticity of Endothelium under Fluid Shear Stress
P.-L. Ko; C.-K. Wang; H.-H. Hsu; T.-A. Lee; Y.-C. Tung
Acta Biomaterialia 145, 316-328
2
2021
Study Angiogenesis into Three-Dimensional (3D) Matrix of Endothelial Cells under Oxygen Gradients Using Microfluidic Devices
H.-H. Hsu; P.-L. Ko; Y.-C. Tung
3
2021
Study Sprouting of Endothelial Cells into Three-Dimensional (3D) Matrices under Oxygen Gradients Using Microfluidic Devices
H.-H. Hsu; P.-L. Ko; Y.-C. Tung
4
2021
Study 3D Endothelial Cell Network Formation under Various Oxygen Microenvironment and Hydrogel Composition Combinations Using Upside-Down Microfluidic Devices
H.-H. Hsu; P.-L. Ko; H.-M. Wu; H.-C. Line; C.-K. Wang; Y.-C. Tung
SMALL 17(15), 2006091
5
2020
Toward a Systemic in vitro Model: Microfluidic Cell Culture,” 2020 Annual Meeting of Taiwan Nanomedicine Society
P.-L. Ko; H.-H. Hsu; H.-M. Wu; Y.-C. Tung
6
2020
Disposable Electrofluidic Pressure Sensor-Embedded Microfluidic Viscometer for Biomedical Applications
T.-A. Lee; W.-H. Liao; P.-L. Ko; Y.-C. Tung
7
2020
Development of in vitro Microfluidic Circulatory System
P.-L. Ko; T.-A. Lee; H.-H. Hsu; W.-H. Liao; Y.-C. Tung
8
2019
Development of a Microfluidic Device Capable of Generating Oxygen Gradients for Three-Dimensional Cell Culture in Hydrogel
H.-H. Hsu; P.-L. Ko; H.-M. Wu; T.-A. Lee; H.-C. Lin; Y.-C. Tung
9
2019
Study Endothelial Cell Networking in Hydrogel under Oxygen Gradients Using Microfluidic Device
H.-H. Hsu; P.-L. Ko; T.-A. Lee; H.-C. Lin; Y.-C. Tung
10
2019
Widefield frequency domain fluorescence lifetime imaging microscopy (FD-FLIM) for accurate measurement of oxygen gradients within microfluidic devices
H.-M. Wu; T.-A. Lee; P.-L. Ko; W.-H. Liao; T.-H. Hsieh
; Y.-C. Tung
Analyst 144(11), 3494-3504
11
2019
Microfluidic Collective Cell Migration Assay for Study of Endothelial Cell Proliferation and Migration under Combinations of Oxygen Gradients, Tensions, and Drug Treatments
H.-C. Shih; T.-A. Lee; H.-M. Wu; P.-L. Ko; W.-H. Liao; Y.-C. Tung
Scientific Reports 9, 8234
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