Zobrazeno 1 - 10
of 59
pro vyhledávání: '"Mark M. Wang"'
Autor:
Haichuan Zhang, Bob Dees, Anita H. Forster, Philippe J. Marchand, William F. Butler, Daniel E. Raymond, Ilona Kariv, Norbert Hagen, Mark M. Wang, Joon Mo Yang, Elinore M. Mercer, Eugene Tu
Publikováno v:
Nature Biotechnology. 23:83-87
Microfluidic-based devices have allowed miniaturization and increased parallelism of many common functions in biological assays; however, development of a practical technology for microfluidic-based fluorescence-activated cell sorting has proved chal
Autor:
Philippe J. Marchand, Eugene Tu, Rong Yang, Anita H. Forster, Kristie Lykstad, Jeff Hall, William F. Butler, Sudipto Sur, Mirianas Chachisvilis, Haichuan Zhang, Luis M. Pestana, Mark M. Wang, Osman Kibar, Ilona Kariv, Elinore M. Mercer, Thomas D.Y. Chung, Sadik C. Esener
Publikováno v:
Analytical Biochemistry. 327:14-22
To facilitate quantitation of cellular apoptotic responses to various antineoplastic agents, a laser-based technology, Optophoresis, has been developed to provide analysis of cells without any need for labeling or cell processing. Optophoresis is def
Publikováno v:
Cytometry. :140-146
Background Most methods for cellular analysis require labeling with specific antibodies or dyes and are often destructive. We have developed a technology called Optophoresis™, which measures cell physiology based on the cell's motion in a near-infr
Publikováno v:
Biomedical Microdevices. 5:61-67
In this paper, we review optical techniques used for micro-manipulation of small particles and cells in microfluidic devices. These techniques are based on the object's interaction with focused laser light (consequential forces of scattering and grad
Autor:
Bing Shao, Matthias Gross, Mihrimah Ozkan, Aaron L. Birkbeck, Richard A. Flynn, Sadik C. Esener, Mark M. Wang
Publikováno v:
Sensors and Actuators B: Chemical. 87:239-243
We have demonstrated the use of vertical cavity surface emitting lasers (VCSELs) for optical trapping and active manipulation of live biological cells and microspheres. We have experimentally verified that the Laguerre‐Gaussian laser mode output fr
Publikováno v:
Optics express. 8(10)
Cationic-induced two-photon photo-polymerization is demonstrated at 710 nm, using an isopropylthioxanthone/diarylidonium salt initiating system for the cationic polymerization of an epoxide. In-situ monitoring of the polymer conversion using interfer
Autor:
Sadik C. Esener, Mark M. Wang
Publikováno v:
Applied optics. 39(11)
We propose a new, to our knowledge, monolithic multilayer optical storage medium in which data may be stored through the diffusional redistribution of fluorescent molecules within a polymer host. The active portion of the medium consists of a photopo
Autor:
Elinore M. Mercer, Anita H. Forster, Mirianas Chachisvillis, Soheil Attari, Manami Hara, Haichuan Zhang, Eugene Tu, William F. Butler, Bob Dees, Ilona Kariv, Norbert Hagen, Mark M. Wang, Daniel E. Raymond, Philippe J. Marchand, Joon Mo Yang, Chris Richardson
Publikováno v:
Optical Trapping and Optical Micromanipulation.
A microfabricated fluorescence activated cell sorter based on an optical switch enables low-stress sorting of small cell populations (i.e. 1,000 - 100,000 cells), a regime that is not addressed by current cell sorters. The glass microchannels are pac
Autor:
William F. Butler, Rong Yang, Eugene Tu, Sudipto Sur, Mark M. Wang, Michael J. Paliotti, Laura A. Simons, Ilona Kariv, Philippe J. Marchand, Norbert Hagen, Kristie Lykstad, Catherine Schnabel, Haichuan Zhang, Luis M. Pestana, Laura McMullin, Mirianas Chachisvilis
Publikováno v:
Applied optics. 42(28)
A novel, noninvasive measurement technique for quantitative cellular analysis is presented that utilizes the forces generated by an optical beam to evaluate the physical properties of live cells in suspension. In this analysis, a focused, near-infrar
Autor:
Anita H. Forster, Jeff Hall, William F. Butler, Mark M. Wang, Philippe J. Marchand, Ilona Kariv, Mirianas Chachisvilis
Publikováno v:
Optics in Computing.
A novel technology, Optophoresis™, uses near-IR lasers to provide quantitative analysis of cells in their native state without labeling or cell processing. Experimental results demonstrate sensitivity and selectivity suitable for pharmaceutical and