DocumentCode :
3283309
Title :
Particles sorting in micro-channel system utilizing magnetic tweezers and optical tweezers
Author :
Chung, Yung-Chiang ; Chen, Po-Wen ; Fu, Chao-Ming ; Sie, Fong-Jian ; Tsai, Cheng-Wei
Author_Institution :
Ming Chi Univ. of Technol., Taipei, Taiwan
fYear :
2011
fDate :
20-23 Feb. 2011
Firstpage :
756
Lastpage :
759
Abstract :
This is a research on classifying magnetic micro-particles in a micro flow tunnel, using an embedded inverted-laser tweezers system, a micro-flow pump and a micro-magnet. Manipulation of the particles in the micro-flow tunnel was achieved. An image recognition system integrated in the micro-flow tunnel was used to identify, count and separate different particles precisely using the laser and magnetic tweezers. In addition, the polystyrene particle classification experiment showed that the good separating result when the continuous flow and magnetic tweezers were used as manipulating forces. The higher the flow velocities were, the larger the separating rate would be, and thus, the largest separating rate was 80% in the study. When the continuous flow and laser tweezers were used as manipulating forces, the polystyrene particle separating rate could be 90%. When the laser tweezers and magnetic tweezers were used, it showed that laser tweezers was the most effective in trapping polystyrene particles when flow velocity were 0.08 to 0.25μm/s. The separating rate of the polystyrene particles could be as high as 95%, and the separating rate of the magnetic particles could also be as high as 85% when the flow rate is around 0.08 to 0.17μm/s.
Keywords :
bioMEMS; biological techniques; image recognition; magnetic particles; microchannel flow; micromagnetics; radiation pressure; continuous flow; image recognition system; inverted-laser tweezer system; laser tweezers; magnetic microparticles; magnetic particles; magnetic tweezers; manipulating forces; microchannel system; microflow pump; microflow tunnel; micromagnet; optical tweezers; particle sorting; polystyrene particles; Biomedical optical imaging; Magnetic particles; Magnetic resonance imaging; Magnetic separation; Magnetic tunneling; Optical device fabrication; magnetic tweezers; micro-channel; optical tweezers; separating rate;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nano/Micro Engineered and Molecular Systems (NEMS), 2011 IEEE International Conference on
Conference_Location :
Kaohsiung
Print_ISBN :
978-1-61284-775-7
Type :
conf
DOI :
10.1109/NEMS.2011.6017464
Filename :
6017464
Link To Document :
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