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Microfluidic electrical sorting of particles based on shape in a spiral microchannel

机译:基于螺旋微通道中形状的微流体电分选

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摘要

Shape is an intrinsic marker of cell cycle, an important factor for identifying a bioparticle, and also a useful indicator of cell state for disease diagnostics. Therefore, shape can be a specific marker in label-free particle and cell separation for various chemical and biological applications. We demonstrate in this work a continuous-flow electrical sorting of spherical and peanut-shaped particles of similar volumes in an asymmetric double-spiral microchannel. It exploits curvature-induced dielectrophoresis to focus particles to a tight stream in the first spiral without any sheath flow and subsequently displace them to shape-dependent flow paths in the second spiral without any external force. We also develop a numerical model to simulate and understand this shape-based particle sorting in spiral microchannels. The predicted particle trajectories agree qualitatively with the experimental observation.
机译:形状是细胞周期的内在标志,是识别生物颗粒的重要因素,也是疾病诊断的细胞状态的有用指标。因此,形状可以成为无标记颗粒和细胞分离中各种化学和生物学应用的特定标记。我们在这项工作中展示了在不对称的双螺旋微通道中对相似体积的球形和花生形颗粒进行连续流电分选。它利用曲率感应介电电泳将颗粒聚焦到第一个螺旋中的紧密流中,而没有任何鞘流,随后将它们移动到第二个螺旋中的形状相关的流路中,而没有任何外力。我们还开发了一个数值模型来模拟和理解螺旋微通道中基于形状的粒子排序。预测的粒子轨迹在质量上与实验观察一致。

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