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Easy Monitoring of Velocity Fields in Microfluidic Devices Using Spatiotemporal Image Correlation Spectroscopy

机译:使用时空图像相关光谱法轻松监测微流控装置中的速度场

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摘要

Spatiotemporal image correlation spectroscopy (STICS) is a simple and powerful technique, well established as a tool to probe protein dynamics in cells. Recently, its potential as a tool to map velocity fields in lab-on-a-chip systems was discussed. However, the lack of studies on its performance has prevented its use for microfluidics applications. Here, we systematically and quantitatively explore STICS microvelocimetry in microfluidic devices. We exploit a simple experimental setup, based on a standard bright-field inverted microscope (no fluorescence required) and a high-fps camera, and apply STICS to map liquid flow in polydimethylsiloxane (PDMS) microchannels. Our data demonstrates optimal 2D velocimetry up to 10 mm/s flow and spatial resolution down to 5 μm.
机译:时空图像相关光谱法(STICS)是一种简单而强大的技术,已被广泛用作探测细胞中蛋白质动态的工具。最近,讨论了其作为在芯片实验室系统中绘制速度场的工具的潜力。但是,由于缺乏有关其性能的研究,因此无法将其用于微流体应用。在这里,我们系统地和定量地探索微流体设备中的STICS微测速技术。我们基于标准的明场倒置显微镜(无需荧光)和高fps相机,利用简单的实验设置,并应用STICS绘制聚二甲基硅氧烷(PDMS)微通道中的液体流量图。我们的数据显示了高达10 mm / s流量的最佳2D测速技术和低至5μm的空间分辨率。

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