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INERTIAL PARTICLE FOCUSING IN PARALLEL MICROFLUIDIC CHANNELS FOR HIGH-THROUGHPUT FILTRATION

机译:用于高通量过滤的平行微流体通道的惯性粒子

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In this study, we introduce inertial microfluidics in straight, parallel channels for high-throughput particle filtration. We show that particles flowing through low aspect ratio rectangular microchannels can be focused into four particle streams, distributed at the centers of each wall face, or into two particle streams, at the centers of the longest channel walls, depending on the particles' size. For high-throughput filtration, we fabricated scalable, single inlet and two outlet, parallel channel microdevices, using a high-density 3D microfluidic PDMS channel manufacturing technology, in a design that allows for easy integration with other downstream on-chip functions we recently described. We demonstrate filtration of 24 μm particles from a suspension mixture in a microdevice with four parallel channels. The filtration efficiency at a non-optimized flow rate of 0.8 ml/min was 82%.
机译:在这项研究中,我们将惯性微流体引入直线,并联通道中,用于高通量粒子过滤。我们表明,流过低纵横比矩形微通道的颗粒可以聚焦到四个颗粒物流中,分布在每个壁面的中心,或者在最长通道壁的中心处,这取决于颗粒的尺寸。对于高通量过滤,我们使用高密度3D微流体PDMS渠道制造技术制造可扩展,单入口和两个出口,并联通道微生物,该设计在设计中允许与我们最近描述的其他下游片上芯片功能轻松集成。我们证明了从具有四个平行通道的微生物的悬浮液中过滤24μm颗粒。在0.8ml / min的未优化流速下的过滤效率为82%。

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