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Magnetic separation of particles and cells in ferrofluid flow through a straight microchannel using two offset magnets

机译:铁磁流体中的颗粒和细胞的磁性分离通过使用两个偏置磁体的直线微通道流动

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摘要

The separation of particles and cells is critical in many chemical and biological applications. This work presents a simple idea for utilizing a pair of permanent magnets to continuously separate diamagnetic particles and cells in ferrofluid flow through a straight microchannel. The first magnet is placed close to the microchannel for focusing the particle mixture to a single stream without the use of a sheath flow. The second magnet, which is offset from the first magnet and placed farther from the channel, is to displace the aligned particles to dissimilar flow paths for a continuous sorting. This idea is first demonstrated through the separation of 3 μm- and 10 μm-diameter polystyrene particles, where the effects of flow speed and magnet distance are both examined. The experimental data are found to fit well with the predictions of an analytical model. Furthermore, a continuous separation of live yeast cells from 10 μm polystyrene particles is implemented in the same device.
机译:在许多化学和生物学应用中,颗粒和细胞的分离至关重要。这项工作提出了一个简单的想法,即利用一对永磁体通过直的微通道连续分离铁磁流体中的反磁性颗粒和细胞。将第一磁体放置在靠近微通道的位置,以将粒子混合物聚焦为单一流,而无需使用鞘流。与第一磁体偏置并远离通道放置的第二磁体用于将对准的颗粒移位至不相似的流动路径以进行连续分选。首先通过分离直径为3μm和10μm的聚苯乙烯颗粒来证明这一想法,在此同时研究了流速和磁体距离的影响。发现实验数据与分析模型的预测非常吻合。此外,在同一设备中实现了从10μm聚苯乙烯颗粒中连续分离活酵母细胞的过程。

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