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Enhanced Throughput for Electrokinetic Manipulation of Particles and Cells in a Stacked Microfluidic Device

机译:堆叠微流控设备中的粒子和细胞的电动操纵的增强的吞吐量。

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摘要

Electrokinetic manipulation refers to the control of particle and cell motions using an electric field. It is an efficient technique for microfluidic applications with the ease of operation and integration. It, however, suffers from an intrinsic drawback of low throughput due to the linear dependence of the typically very low fluid permittivity. We demonstrate in this work a significantly enhanced throughput for electrokinetic manipulation of particles and cells by the use of multiple parallel microchannels in a two-layer stacked microfluidic device. The fabrication of this device is simple without the need of a precise alignment of the two layers. The number of layers and the number of microchannels in each layer can thus be further increased for a potentially high throughput electrokinetic particle and cell manipulations.
机译:电动操纵是指使用电场控制粒子和细胞的运动。对于微流体应用而言,这是一种高效的技术,具有易于操作和集成的特点。然而,由于典型地非常低的流体介电常数的线性依赖性,其遭受了低通量的固有缺陷。我们在这项工作中证明了通过在两层堆叠式微流控设备中使用多个平行的微通道,可以显着提高粒子和细胞的电动控制的通量。该装置的制造是简单的,不需要两层的精确对准。因此,对于潜在的高通量电动粒子和细胞操作,可以进一步增加层数和每层中的微通道数。

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