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首页> 外文期刊>Microfluidics and nanofluidics >Three-dimensional hydrodynamic flow focusing of dye, particles and cells in a microfluidic device by employing two bends of opposite curvature
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Three-dimensional hydrodynamic flow focusing of dye, particles and cells in a microfluidic device by employing two bends of opposite curvature

机译:通过使用两个相反曲率的弯曲,对微流体设备中的染料,颗粒和细胞进行三维流体动力聚焦

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摘要

This work relates to three-dimensional (3D) hydrodynamic flow focusing, wherein sample is encapsulated by sheath fluid in all the directions, making it a preferred method for particle focusing. Given the complex phenomenon involved in achieving 3D hydrodynamic focusing, we have been able to demonstrate a relatively simple microdevice for achieving this objective. In this work, a novel approach for 3D focusing utilizing two bends of opposite curvature in microchannel is proposed and demonstrated through experiments and numerical simulations. The proposed microdevice is fabricated on a single layer of polydimethylsiloxane and a single sheath inlet is used, thereby simplifying the 3D focusing mechanism and reducing the requirements of cost enhancing accessories. The mechanism underlying particle focusing is examined in detail. This microdevice provides several distinct advantages over other designs mentioned in the literature.
机译:这项工作涉及三维(3D)流体动力聚焦,其中样品被鞘液沿所有方向封装,这使其成为首选的颗粒聚焦方法。考虑到实现3D流体动力聚焦所涉及的复杂现象,我们已经能够演示一个相对简单的微型设备来实现此目标。在这项工作中,提出了一种利用微通道中两个相反曲率的弯曲进行3D聚焦的新颖方法,并通过实验和数值模拟进行了演示。所提出的微型设备是在单层聚二甲基硅氧烷上制造的,并且使用了一个护套入口,从而简化了3D聚焦机制,并降低了对成本增加配件的要求。详细研究了粒子聚焦的机理。与文献中提到的其他设计相比,这种微型设备具有几个明显的优势。

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