臺大學術典藏 |
2018-09-10T15:00:33Z |
Integrated Nanoplasmonic Sensing for Cellular Functional Immunoanalysis Using Human Blood
|
B.-R. Oh;N.-T. Huang;W. Chen;J. Seo;P. Chen;T. T. Cornell;T. P. Shanley;J. Fu;K. Kurabayashi; B.-R. Oh; N.-T. Huang; W. Chen; J. Seo; P. Chen; T. T. Cornell; T. P. Shanley; J. Fu; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T15:00:33Z |
Integrated Nanoplasmonic Sensing for Cellular Functional Immunoanalysis Using Human Blood
|
B.-R. Oh;N.-T. Huang;W. Chen;J. Seo;P. Chen;T. T. Cornell;T. P. Shanley;J. Fu;K. Kurabayashi; B.-R. Oh; N.-T. Huang; W. Chen; J. Seo; P. Chen; T. T. Cornell; T. P. Shanley; J. Fu; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T15:00:33Z |
Recent advancements in optofluidics-based single-cell analysis: Optical on-chip cellular manipulation, treatment, and property detection
|
N.–T. Huang;H. Zhang;M. –T. Chung;J. H. Seo;K. Kurabayashi; N.–T. Huang; H. Zhang; M. –T. Chung; J. H. Seo; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T15:00:33Z |
Recent advancements in optofluidics-based single-cell analysis: Optical on-chip cellular manipulation, treatment, and property detection
|
N.–T. Huang;H. Zhang;M. –T. Chung;J. H. Seo;K. Kurabayashi; N.–T. Huang; H. Zhang; M. –T. Chung; J. H. Seo; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T15:00:33Z |
Aqueous two-phase systems enable multiplexing of homogeneous immunoassays
|
A. B. Simon;J. P. Frampton;N. -T. Huang;S. Paczesny;K. Kurabayashi;S. Takayama; A. B. Simon; J. P. Frampton; N. -T. Huang; S. Paczesny; K. Kurabayashi; S. Takayama; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T15:00:33Z |
Aqueous two-phase systems enable multiplexing of homogeneous immunoassays
|
A. B. Simon;J. P. Frampton;N. -T. Huang;S. Paczesny;K. Kurabayashi;S. Takayama; A. B. Simon; J. P. Frampton; N. -T. Huang; S. Paczesny; K. Kurabayashi; S. Takayama; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:50:44Z |
Emerging Microfluidic Tools for Functional Immunophenotyping: A New Potential Paradigm for Immune Status Characterization
|
W. Chen;N.-T. Huang;X. Li;Z. Yu;K. Kurabayashi;J. Fu; W. Chen; N.-T. Huang; X. Li; Z. Yu; K. Kurabayashi; J. Fu; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:50:44Z |
Emerging Microfluidic Tools for Functional Immunophenotyping: A New Potential Paradigm for Immune Status Characterization
|
W. Chen;N.-T. Huang;X. Li;Z. Yu;K. Kurabayashi;J. Fu; W. Chen; N.-T. Huang; X. Li; Z. Yu; K. Kurabayashi; J. Fu; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:50:44Z |
Surface-micromachined microfiltration membranes for efficient isolation and functional immunophenotyping of subpopulations of immune cells
|
W. Chen;N. -T. Huang;B. -R. Oh;R. H. W. Lam;R. Fan;T. T. Cornell;T. P. Shanley;K. Kurabayashi;J. Fu; W. Chen; N. -T. Huang; B. -R. Oh; R. H. W. Lam; R. Fan; T. T. Cornell; T. P. Shanley; K. Kurabayashi; J. Fu; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:50:44Z |
Surface-micromachined microfiltration membranes for efficient isolation and functional immunophenotyping of subpopulations of immune cells
|
W. Chen;N. -T. Huang;B. -R. Oh;R. H. W. Lam;R. Fan;T. T. Cornell;T. P. Shanley;K. Kurabayashi;J. Fu; W. Chen; N. -T. Huang; B. -R. Oh; R. H. W. Lam; R. Fan; T. T. Cornell; T. P. Shanley; K. Kurabayashi; J. Fu; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:17Z |
An integrated microfluidic platform for in-situ cellular cytokine secretion immunophenotyping
|
N. -T. Huang;W. Chen;B. -R. Oh;T. T. Cornell;T. P. Shanley;J. Fu,;K. Kurabayashi; N. -T. Huang; W. Chen; B. -R. Oh; T. T. Cornell; T. P. Shanley; J. Fu,; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:17Z |
An integrated microfluidic platform for in-situ cellular cytokine secretion immunophenotyping
|
N. -T. Huang;W. Chen;B. -R. Oh;T. T. Cornell;T. P. Shanley;J. Fu,;K. Kurabayashi; N. -T. Huang; W. Chen; B. -R. Oh; T. T. Cornell; T. P. Shanley; J. Fu,; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:17Z |
Multi-Spectral Tunable Excitation Fluorescence Microscopy with a Nanoimprinted PDMS-on-Silicon Grating Optical Filter
|
N. -T. Huang; S. Truxal; Y. -C. Tung; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:17Z |
An integrated microfluidic platform for in-situ cellular cytokine secretion immunophenotyping
|
N. -T. Huang;W. Chen;B. -R. Oh;J. Fu;K. Kurabayashi; N. -T. Huang; W. Chen; B. -R. Oh; J. Fu; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:17Z |
An integrated microfluidic platform for in-situ cellular cytokine secretion immunophenotyping
|
N. -T. Huang;W. Chen;B. -R. Oh;J. Fu;K. Kurabayashi; N. -T. Huang; W. Chen; B. -R. Oh; J. Fu; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:17Z |
Surface Micromaching Polydimethylsiloxane(PDMS) for Microfluidic Biomedical Application
|
W. Chen;N. -T. Huang;K. Kurabayashi;J. Fu; W. Chen; N. -T. Huang; K. Kurabayashi; J. Fu; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:17Z |
Surface Micromaching Polydimethylsiloxane(PDMS) for Microfluidic Biomedical Application
|
W. Chen;N. -T. Huang;K. Kurabayashi;J. Fu; W. Chen; N. -T. Huang; K. Kurabayashi; J. Fu; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:17Z |
Optical Nano and Micro Actuator Technology, Chapter 16: Multiscale, Hierarchical Integration of Soft Polymer Micro- and Nano Structures into Optical MEMS
|
K. Kurabayashi;N. -T. Huang;Y.-C. Tung; K. Kurabayashi; N. -T. Huang; Y.-C. Tung; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:17Z |
Optical Nano and Micro Actuator Technology, Chapter 16: Multiscale, Hierarchical Integration of Soft Polymer Micro- and Nano Structures into Optical MEMS
|
K. Kurabayashi;N. -T. Huang;Y.-C. Tung; K. Kurabayashi; N. -T. Huang; Y.-C. Tung; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:16Z |
Optofluidic detection for cellular phenotyping
|
Y. -C. Tung;N. -T. Huang;B. -R. Oh;B. Patra;C. -C. Pan;T. Qiu;P. K. Chu;W. Zhang;K. Kurabayashi; Y. -C. Tung; N. -T. Huang; B. -R. Oh; B. Patra; C. -C. Pan; T. Qiu; P. K. Chu; W. Zhang; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T09:25:16Z |
Optofluidic detection for cellular phenotyping
|
Y. -C. Tung;N. -T. Huang;B. -R. Oh;B. Patra;C. -C. Pan;T. Qiu;P. K. Chu;W. Zhang;K. Kurabayashi; Y. -C. Tung; N. -T. Huang; B. -R. Oh; B. Patra; C. -C. Pan; T. Qiu; P. K. Chu; W. Zhang; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T08:18:49Z |
Multiplexed spectral signature detection for microfluidic color-coded bioparticle flow
|
N. -T. Huang;S. C. Truxal;Y. -C. Tung;A. Y. Hsiao;G. D. Luker;S. Takayama;K. Kurabayashi; N. -T. Huang; S. C. Truxal; Y. -C. Tung; A. Y. Hsiao; G. D. Luker; S. Takayama; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T08:18:49Z |
Multiplexed spectral signature detection for microfluidic color-coded bioparticle flow
|
N. -T. Huang;S. C. Truxal;Y. -C. Tung;A. Y. Hsiao;G. D. Luker;S. Takayama;K. Kurabayashi; N. -T. Huang; S. C. Truxal; Y. -C. Tung; A. Y. Hsiao; G. D. Luker; S. Takayama; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T07:42:37Z |
High-Speed Tuning of Visible Laser Wavelength Using a Nanoimprinted Grating Optical Tunable Filter
|
N. -T. Huang;S. C. Truxal;Y. -C. Tung;A. Hsiao;S. Takayama;K. Kurabayashi; N. -T. Huang; S. C. Truxal; Y. -C. Tung; A. Hsiao; S. Takayama; K. Kurabayashi; NIEN-TSU HUANG |
臺大學術典藏 |
2018-09-10T07:42:37Z |
High-Speed Tuning of Visible Laser Wavelength Using a Nanoimprinted Grating Optical Tunable Filter
|
N. -T. Huang;S. C. Truxal;Y. -C. Tung;A. Hsiao;S. Takayama;K. Kurabayashi; N. -T. Huang; S. C. Truxal; Y. -C. Tung; A. Hsiao; S. Takayama; K. Kurabayashi; NIEN-TSU HUANG |