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Precise droplet volume measurement and electrode-based volume metering in digital microfluidics

机译:数字微流控中的精确液滴体积测量和基于电极的体积计量

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In this work, for the first time, we demonstrate nanoscale droplet generation from a continuous electrow-etting microchannel using a simple and precise image-based droplet volume metering technique. One of the most popular ways of droplet generation in electrowetting devices is to split a droplet from a preloaded volume as a fluid reservoir. This method is effective, but lowers volume consistency after multiple droplets are generated. Impedance- and capacitance-based methods of volume metering have been successfully used in digital microfluidics, but require complex circuitry and feedback signal processing. In this work, we demonstrate nanoliter droplet generation from a continuous electrowetting channel used as a replenishable fluid reservoir which compensates for the loss of reservoir volume as droplets are sequentially split. This improves volume consistency especially for applications requiring multi-droplet generation. Based on the area of the electrode, the volume of each droplet split from the electrowetting channel can be obtained by a simple and precise image processing technique with no need for additional hardware and measurement errors of ±0.05 %. This simple technique can be used in a wide range of applications that require precise volume metering, such as immunoassay.
机译:在这项工作中,我们首次展示了使用简单且精确的基于图像的液滴体积计量技术从连续的电润湿微通道产生纳米级液滴的过程。电润湿装置中最流行的液滴产生方式之一是从作为流体储存器的预加载体积中分离液滴。此方法有效,但会在生成多个液滴后降低体积一致性。基于阻抗和电容的体积计量方法已成功用于数字微流体技术,但需要复杂的电路和反馈信号处理。在这项工作中,我们证明了从连续的电润湿通道产生的纳升液滴可作为可补充的储液罐,该储液罐可补偿由于液滴连续分裂而导致的储罐体积损失。这提高了体积一致性,尤其是对于需要多液滴生成的应用程序。基于电极的面积,可以通过简单而精确的图像处理技术获得从电润湿通道分离的每个液滴的体积,而无需额外的硬件和±0.05%的测量误差。这种简单的技术可以用于需要精确体积计量的广泛应用中,例如免疫测定。

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