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Sample Preparation on Micro-Electrode-Dot-Array Digital Microfluidic Biochips

机译:微电极点阵列数字微流体生物芯片的样品制备

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Sample preparation in digital microfluidics refers to the generation of droplets with target concentrations for onchip biochemical applications. In recent years, digital microfluidic biochips (DMFBs) have been adopted as a platform for sample preparation. However, there remain one major problem associated with sample preparation on a conventional DMFB. For conventional DMFBs, only a (1:1) mixing/splitting model can be used, leading to an increase in the number of fluidic operations required for sample preparation. To overcome the drawback, we adopt a next generation DMFB platform, referred to as micro-electrode-dot-array (MEDA), for sample preparation. We propose the first sample preparation method that exploits the MEDA-specific advantages of fine-grained control of droplet sizes and real-time droplet sensing. Experimental demonstration using a fabricated MEDA biochip and simulation results highlight the effectiveness of the proposed sample-preparation method.
机译:数字微流体中的样品制备是指具有针对onchip生化应用的目标浓度的液滴。近年来,数字微流体Biochips(DMFB)已被采用作为样品制备的平台。然而,仍然存在与传统DMFB上的样品制备相关的一个主要问题。对于常规DMFB,可以仅使用(1:1)混合/分裂模型,从而增加样品制备所需的流体操作的数量。为了克服缺点,我们采用下一代DMFB平台,称为微电极 - 点阵列(MEDA),用于样品制备。我们提出了第一种采样制备方法,利用液滴尺寸和实时液滴感测的细粒度控制的特异性优势。使用制造的Meda Biochip和仿真结果的实验​​演示突出了所提出的样品制备方法的有效性。

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