DocumentCode :
2872772
Title :
Microchip flow cytometer with integrated polymer optical elements for measurement of scattered light
Author :
Wang, Z. ; El-Ali, J. ; Perch-Nielsen, I.R. ; Mogensen, K.B. ; Snakenborg, D. ; Kutter, J.P. ; Wolff, A.
Author_Institution :
MIC, Tech. Univ. Denmark, Lyngby, Denmark
fYear :
2004
fDate :
2004
Firstpage :
367
Lastpage :
370
Abstract :
Flow cytometry is a very powerful method for biophysical measurement of microparticles, such as cells and bacteria. In this paper, we report an innovative microsystem, in which several different optical elements (waveguides, lenses and fiber-to-waveguide couplers) are integrated with microfluidic channels to form a complete microchip flow cytometer. All the optical elements, the microfluidic system, and the fiber-to-waveguide couplers were defined in one layer of polymer (SU-8, negative photoresist) by standard photolithography. With only one single mask procedure, all the fabrication and packaging processes can be finished in one day. Polystyrene beads were measured in the microchip flow cytometer, and three signals (forward scattering, large angle scattering and extinction) were measured simultaneously for each bead. The average intensities of the forward Scattered light and the incident light extinction showed excellent linear relationship with the sizes of the beads. To our knowledge this is the first time forward scattered light and incident light extinction were measured in a microsystem using integrated optics. The microsystem can be applied for analyzing different kinds of particles and cells, and can easily be integrated with other microfluidic components.
Keywords :
cellular biophysics; chip scale packaging; integrated optics; masks; micro-optics; microfluidics; microorganisms; optical fibre couplers; optical polymers; patient diagnosis; photolithography; polymer films; bacteria; biophysical measurement; fiber-waveguide couplers; integrated optics; integrated polymer optical elements; lenses; microchip flow cytometer; microfluidic channels; microparticles; microsystem; optical elements; packaging processes; photolithography; photoresist; polymer; polystyrene beads; scattered light measurement; Biomedical optical imaging; Fluid flow measurement; Image motion analysis; Integrated optics; Light scattering; Microfluidics; Optical fiber couplers; Optical polymers; Optical scattering; Particle scattering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro Electro Mechanical Systems, 2004. 17th IEEE International Conference on. (MEMS)
Print_ISBN :
0-7803-8265-X
Type :
conf
DOI :
10.1109/MEMS.2004.1290598
Filename :
1290598
Link To Document :
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