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Controlling Shapes in a Coaxial Flow Focusing Microfluidic Device: Experiments and Theory

机译:同轴流聚焦微流控设备中的形状控制:实验和理论

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摘要

A coaxial flow focusing PDMS (polydimethylsiloxane) microfluidic device has been designed and manufactured by soft lithography in order to experimentally study a miscible inner flow. We studied a coaxially focused inner flow (formed by an aqueous fluorescein solution) which was fully isolated from all microchannel surfaces by an additional water outer flow. Different flow rates were used to produce a variety of flow ratios and a 3D reconstruction of the cross-section was performed using confocal microscope images. The results showed an elliptical section of the coaxially focused inner flow that changes in shape depending on the flow rate ratio applied. We have also developed a mathematical model that allows us to predict and control the geometry of the coaxially focused inner flow.
机译:同轴流聚焦PDMS(聚二甲基硅氧烷)微流体器件已经通过软光刻技术设计和制造,以便通过实验研究可混溶的内部流。我们研究了同轴聚焦的内部流(由荧光素水溶液形成),该内部流通过附加的水外部流与所有微通道表面完全隔离。使用不同的流速产生各种流速,并使用共聚焦显微镜图像进行横截面的3D重建。结果显示,同轴聚焦的内部流的椭圆形截面会根据所应用的流量比率而改变形状。我们还开发了一个数学模型,该模型可以预测和控制同轴聚焦的内部流动的几何形状。

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