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Reliability Analysis of Mixture Preparation Using Digital Microfluidic Biochips

机译:使用数字微流体生物芯片的混合物制备可靠性分析

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With the evolution of the technology, digital microfluidic (DMF) biochips have become a vital part of biochemical research. Hence, it is required to consider the reliability of the different fluidic operations performed on a biochip. Sample preparation is an important process of any real-life bioprotocol implementation on a DMF biochip. In this process, sequence of mixing and dilution steps are determined to get the desired target concentrations. The mixers used for performing mix-split steps may incorporate some noise during mixing and can result in the erroneous concentrations of the reagents. Thus, the reliability analysis of the resultant target concentration is necessary and methods are required to he developed to reduce these concentration errors. In this paper, the error and reliability models arc discussed to compare the reliabilities of the existing mixing algorithms. Simulation results show that for a given target ratio, reliability of common dilution operation sharing (Liu et al., ICCAD-2013) is higher. We also discuss the mixer assignment techniques and the heuristic approach is found to quickly provide the better order of mixer assignment in order to achieve highly reliable mixture after sample preparation.
机译:随着技术的演变,数字微流体(DMF)Biochips已成为生化研究的重要组成部分。因此,需要考虑在生物芯片上执行的不同流体操作的可靠性。样品制备是DMF Biochip上任何现实生物政策实施的重要过程。在该过程中,确定混合和稀释步骤的序列以获得所需的靶浓度。用于进行混合分裂步骤的混合器可以在混合过程中包含一些噪音,并且可以导致试剂的错误浓度。因此,所得到的目标浓度的可靠性分析是必要的,并且需要对他开发的方法来减少这些浓度误差。在本文中,讨论误差和可靠性模型来比较现有混合算法的可靠性。仿真结果表明,对于给定的目标比率,共同稀释操作共享的可靠性(Liu等,ICCAD-2013)更高。我们还讨论了混合器分配技术,发现启发式方法可以快速提供更好的混合器分配顺序,以便在样品制备后实现高度可靠的混合物。

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