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Moving shot, an affordable and high-throughput setup for direct imaging of fast-moving microdroplets

机译:移动拍摄,实惠和高通量设置,用于快速移动微型电流的直接成像

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摘要

Droplet microfluidics have a great potential in chemical and biomedical applications, due to their high throughput, versatility, and massive parallelism. To enhance their throughput, many devices based on the droplet microfluidics are using a flow-through configuration, in which the droplets are generated, transported, and analyzed in a continuous stream with a high velocity. Direct imaging of moving droplets is often necessary to characterize the spatiotemporal dynamics of the chemical reaction and physical process in the droplets. However, due to the motion blur caused by the movement of the droplets during exposure, an expensive high-speed camera is required for clear imaging, which is cost prohibitive in many applications. In this paper, we are presenting 'Moving shot' to demonstrate direct imaging of fast-moving droplets in microfluidic channels at an affordable cost. A microfluidic device is translated at the same velocity but in the opposite direction of moving droplets in it, so that the droplets are stationary with respect to the objective lens. With this approach, we can image fluorescent droplets moving at 0.34 cm s(-1) with an exposure time up to 2 s without motion blur. We strongly believe that the proposed technique can enable cost-effective and high-throughput imaging of fast-moving droplets in a microfluidic channel.
机译:由于其高通量,多功能性和巨大的平行性,液滴微流体具有巨大的化学和生物医学应用潜力。为了增强它们的吞吐量,基于液滴微流体的许多设备使用流通配置,其中产生,运输,并在具有高速的连续流中进行液滴。移动液滴的直接成像通常是必要的,以表征化学反应的时空动态和液滴中的物理过程。然而,由于液体在曝光期间液滴的移动引起的运动模糊,清除成像需要昂贵的高速相机,这在许多应用中是成本越穷的。在本文中,我们正在提出“移动射击”,以实惠的成本证明微流体通道中快速液滴的直接成像。微流体装置以相同的速度转换,但在其上的移动液滴的相反方向上,使得液滴相对于物镜静止。通过这种方法,我们可以在0.34cm s(-1)上的荧光液滴在0.34cm s(-1)上,曝光时间高达2s,没有运动模糊。我们强烈认为,所提出的技术可以在微流体通道中能够使得快速液滴的成本效益和高通量成像。

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