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Deformation of Red Blood Cells, Air Bubbles, and Droplets in Microfluidic Devices: Flow Visualizations and Measurements

机译:微流体装置中红细胞,气泡和液滴的变形:流量可视化和测量

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摘要

Techniques, such as micropipette aspiration and optical tweezers, are widely used to measure cell mechanical properties, but are generally labor-intensive and time-consuming, typically involving a difficult process of manipulation. In the past two decades, a large number of microfluidic devices have been developed due to the advantages they offer over other techniques, including transparency for direct optical access, lower cost, reduced space and labor, precise control, and easy manipulation of a small volume of blood samples. This review presents recent advances in the development of microfluidic devices to evaluate the mechanical response of individual red blood cells (RBCs) and microbubbles flowing in constriction microchannels. Visualizations and measurements of the deformation of RBCs flowing through hyperbolic, smooth, and sudden-contraction microchannels were evaluated and compared. In particular, we show the potential of using hyperbolic-shaped microchannels to precisely control and assess small changes in RBC deformability in both physiological and pathological situations. Moreover, deformations of air microbubbles and droplets flowing through a microfluidic constriction were also compared with RBCs deformability.
机译:诸如微型仪吸入和光学镊子的技术广泛用于测量细胞机械性能,但通常是劳动密集型和耗时的,通常涉及难以操纵的过程。在过去的二十年中,由于它们提供的其他技术提供了大量的微流体装置,包括直接光学接入,降低成本,降低空间和劳动力,精确控制和易于操纵小体积的透明度,包括透明度,包括透明度血样。本综述介绍了微流体装置的开发的最新进展,以评估单个红细胞(RBC)和在收缩微通道中流动的微泡的机械响应。评估并比较了流经双曲线,平滑和突然收缩微通道的RBC变形的可视化和测量。特别是,我们展示了使用双曲形微通道的潜力,以精确地控制和评估生理和病理情况的RBC可变形性的小变化。此外,还与RBCS可变形性进行了比较了流过微流体收缩的空气微泡和流过微流体收缩的变形。

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