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Sheathless Dean-flow-coupled elasto-inertial particle focusing and separation in viscoelastic fluid

机译:粘弹性流体中无鞘的迪安流动耦合弹惯性粒子聚焦与分离

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摘要

In this paper, a novel microfluidic device for sheathless particle focusing and separation in viscoelastic fluid is proposed. The device consists of two stages: a straight channel section with asymmetrical expansion–contraction cavity arrays (ECCA section) for sheathless Dean-flow-coupled elasto-inertial particle focusing (1st stage), and a straight channel section for viscoelastic particle separation (2nd stage). In stage 1, particles with diameters of 5 μm and 13 μm were both focused at the opposite sides of the cavities. Then, the particles were subsequently separated at the 2nd stage based on the differential focusing dependency on size. The effects of flow rates and channel length on particle separation were investigated. Particle separation in both viscoelastic fluid and Newtonian fluid was also compared to elucidate the differences. In addition, particle separation in the straight channel and integrated ECCA straight channel was also studied. The proposed device was used to separate human Jurkat cells (an immortalized T cell line) and yeast cells. Experimental results show that this technique offers an efficient, continuous, and sheathless particle separation in viscoelastic fluid.
机译:在本文中,提出了一种新颖的微流体装置,用于在粘弹性流体中进行无鞘粒子聚焦和分离。该设备包括两个阶段:用于非鞘膜迪安流耦合的弹性惯性粒子聚焦的直通道部分(具有不对称的伸缩腔阵列)(第一阶段),以及用于粘弹性粒子分离的直通道部分(第二阶段)阶段)。在阶段1中,直径分别为5μm和13μm的粒子都聚焦在空腔的相对两侧。然后,基于对尺寸的微分聚焦依赖性,随后在第二阶段分离颗粒。研究了流速和通道长度对颗粒分离的影响。还比较了粘弹性流体和牛顿流体中的颗粒分离,以阐明差异。此外,还研究了直通道和集成ECCA直通道中的颗粒分离。拟议的设备用于分离人Jurkat细胞(永生化的T细胞系)和酵母细胞。实验结果表明,该技术可在粘弹性流体中提供有效,连续和无鞘的颗粒分离。

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