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A Contamination Aware Droplet Routing Algorithm for the Synthesis of Digital Microfluidic Biochips

机译:一种用于数字微流控生物芯片合成的污染感知液滴路由算法

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Recent advances of digital microfluidic biochips (DMFBs) have revolutionized the traditional laboratory procedures. By providing the droplet-based system, DMFB can perform real-time biological analysis and safety-critical biomedical applications. However, different droplets being transported and manipulated on the DMFB may introduce the contamination problem caused by liquid residue between different biomolecules. To overcome this problem, a wash droplet is introduced to clean the contaminations on the surface of the microfluidic array. However, current scheduling of wash droplet does not restrict the extra used cells and execution time of bioassay, thereby degrading the reliability and fault-tolerance significantly. In this paper, we propose a contamination aware droplet routing algorithm for DMFBs. To reduce the routing complexity and the used cells, we first construct preferred routing tracks by analyzing the global moving vector of droplets to guide the droplet routing. To cope with contaminations within one subproblem, we first apply a $k$ -shortest path routing technique to minimize the contaminated spots. Then, to take advantage of multiple wash droplets, we adopt a minimum cost circulation (MCC) algorithm for optimal wash-droplet routing to simultaneously minimize used cells and the cleaning time. Since the droplet routing problem consists of several subproblems, a look-ahead prediction technique is further used to determine the contaminations between successive subproblems. After that, we can simultaneously clean both contaminations within one subproblem and those between successive subproblems by using the MCC-based algorithm to reduce the execution time and the used cells significantly. Based on four widely used bioassays, our algorithm reduces the used cells and the execution time significantly compared with the state-of-the-art algorithm.
机译:数字微流控生物芯片(DMFB)的最新进展彻底改变了传统的实验室程序。通过提供基于液滴的系统,DMFB可以执行实时生物学分析和对安全至关重要的生物医学应用。但是,在DMFB上运输和操作的不同液滴可能会引入由不同生物分子之间的液体残留物引起的污染问题。为了克服这个问题,引入清洗液滴以清洗微流体阵列表面上的污染物。然而,当前洗涤液滴的调度并没有限制额外的使用单元和生物测定的执行时间,从而显着降低了可靠性和容错性。在本文中,我们提出了一种针对DMFB的污染感知液滴路由算法。为了降低路由的复杂性和所用的单元格,我们首先通过分析液滴的全局运动向量来构建首选的路由轨迹,以指导液滴的路由。为了解决一个子问题中的污染,我们首先应用$ k $-最短路径布线技术以最大程度地减少污染点。然后,为了利用多个清洗液滴,我们采用最小成本循环(MCC)算法来实现最佳清洗液滴路径,以同时最小化用过的细胞和清洗时间。由于液滴的路由问题由几个子问题组成,因此,进一步使用了一种预见预测技术来确定连续子问题之间的污染。之后,我们可以使用基于MCC的算法同时清除一个子问题中的污染以及连续子问题之间的污染,从而显着减少执行时间和使用的单元。基于四种广泛使用的生物测定,与最新算法相比,我们的算法显着减少了使用的细胞和执行时间。

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