Title :
Particles sorting in micro-channel using magnetic tweezers and optical tweezers
Author :
Yung-Chiang Chung ; Po-Wen Chen ; Chao-Ming Fu ; Jyun-Hong Jheng
Author_Institution :
Grad. Sch. of Mech.-Electro Eng., Ming Chi Univ. of Technol., New Taipei, Taiwan
Abstract :
This study evaluates a method for separating magnetic microparticles in a micro channel by using embedded inverted-laser tweezers, a microflow pump, and a micro magnet. Various particles were separated using optical and/or magnetic tweezers, and were identified and counted to determine the dependence of the sorting rate on the channel flow velocity. The particle sorting experiment showed good separation results when the designed channel and magnetic tweezers were used. For magnetic particles, lower flow velocities corresponded to larger separating rates with a maximum separating rate of 81%. When the designed channel and optical tweezers were used, the polystyrene particle separating rate was as high as 94%. When both the optical tweezers and the magnetic tweezers were used, the optical tweezers were more effective in trapping polystyrene particles with flow velocities between 0.09 and 0.25μm/s. For flow velocities between 0.09 and 0.17 μm/s, the separating rate for polystyrene particles reached 95% and the separating rate for magnetic particles reached 85%.
Keywords :
bioMEMS; magnetic particles; magnetic separation; micro-optics; microchannel flow; polymers; radiation pressure; sorting; embedded inverted-laser tweezers; magnetic microparticle separation; magnetic tweezers; microchannel flow velocity; microflow pump; micromagnet; optical tweezers; polystyrene particle separating rate; velocity 0.09 mum/s to 0.25 mum/s; Biomedical optical imaging; Magnetic flux; Magnetic particles; Magnetic resonance imaging; Magnetic separation; Optical imaging; magnetic tweezers; micro-channel; optical tweezers; separating rate;
Conference_Titel :
Nano/Micro Engineered and Molecular Systems (NEMS), 2014 9th IEEE International Conference on
Conference_Location :
Waikiki Beach, HI
DOI :
10.1109/NEMS.2014.6908891