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Design and operation of a micromachined bubble-jet cell sorter

机译:微机械泡沫喷射细胞分拣机的设计与运行

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We present a high-speed microfluidic cell sorter employing embedded heaters and nozzles to generate deflecting jets to change the movement of the cells. We simulated the transient flow fields to validate the concept and optimize the sorter design. The simulation demonstrates a spatial switching window corresponding to 1.1 times the switching chamber length. Experimental verification was obtained using micromachined devices characterized by stroboscopic measurements. With a 4.9 /spl mu/s working period for the 20/spl times/20 /spl mu/m/sup 2/ heaters that generate the deflecting jets, the sorter can potentially attain a working frequency of 50 kHz or higher. We built a scattered-light based optical system to detect moving particles and successfully performed sorting of 20 /spl mu/m microspheres. This type of sorter is promising for micromanipulation of a variety of biological cells and inorganic particles.
机译:我们介绍了一种采用嵌入式加热器和喷嘴的高速微流体细胞分选机,以产生偏转喷射以改变电池的运动。我们模拟了瞬态流字段以验证概念并优化分拣机设计。该模拟演示了对应于开关室长度的1.1倍的空间切换窗口。使用以频闪测量为特征的微机械装置获得实验验证。对于20 / SPL时/ 20 / SPL MU / M / M / M / SUP 2 /产生偏转喷射器的加热器,分拣机可能达到50kHz或更高的工作频率的4.9 / SPL时间/ SPCU / SUP 2 / SPU / SP / SCU / SUP 2 / SCU / SUP 2 / SUP 2 / SPURE。我们构建了一种散射光的光学系统,以检测移动颗粒,并成功地执行了20 / SPL MU / M微球的分选。这种类型的分拣机很有前景对于各种生物细胞和无机颗粒的微观方式。

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