Particles sorting in micro-channel using magnetic tweezers and optical tweezers

Yung-Chiang Chung, Po-Wen Chen, Chao-Ming Fu, Jyun-Hong Jheng
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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%.
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利用磁镊和光镊对微通道中的颗粒进行分选
本研究评估了一种利用嵌入式倒置激光镊子、微流泵和微磁铁在微通道中分离磁性微粒的方法。使用光学和/或磁性镊子分离各种颗粒,并对其进行识别和计数,以确定分选率与通道流速的依赖关系。采用所设计的通道和磁镊进行颗粒分选实验,取得了良好的分选效果。对于磁性颗粒,流速越低,分离率越大,最大分离率为81%。当使用设计的通道和光镊时,聚苯乙烯颗粒的分离率高达94%。当光镊和磁镊同时使用时,光镊对流速在0.09 ~ 0.25μm/s之间的聚苯乙烯颗粒的捕获效果更好。在0.09 ~ 0.17 μm/s流速范围内,聚苯乙烯颗粒的分离率可达95%,磁性颗粒的分离率可达85%。
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