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Flexible Droplet Routing in Active Matrix-Based Digital Microfluidic Biochips

机译:基于有源矩阵的数字微流体生物芯片中的灵活液滴路由

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The active matrix (AM)-based architecture offers many advantages over conventional digital electrowetting-on-dielectric (EWOD) microfluidic biochips, such as the capability of handling variable-size droplets, more flexible droplet movement, and precise control over droplet navigation. However, a major challenge in choosing the routing paths is to decide when the droplets are to be reshaped depending on the congestion of the intended path, or split- and route sub droplets,and merging them at their respective destinations. As the number of microelectrodes in AM-EWOD chips is large, the path selection problem becomes further complicated. In this article, we propose a negotiation-guided flow based on routing of subdroplets that obviates the explicit need for deciding when the droplets are to be manipulated, yet fully utilizing the power of droplet reshaping, splitting, and merging them to facilitate their journey. The proposed algorithm reduces routing cost and provides more freedom in deadlock avoidance in the presence of multiple routing tasks by assigning certain congestion penalty for sibling subdroplets and fluidic penalty for heterogeneous droplets. Compared to existing techniques, it reduces latest arrival time by an average of 29% for several benchmark and random test suites. Furthermore, our method is observed to provide 100% routability of nets for all test cases, whereas existing and baseline routers fail to produce feasible solutions in many instances. We also propose a reliable mode droplet routing strategy where the number of unreliable splitting operations can be reduced by paying a small penalty on latest arrival time.
机译:基于传统的数字电润湿电介质(EWOD)微流体生物芯片的有源矩阵(AM)的架构提供了许多优点,例如处理可变尺寸液滴,更灵活的液滴运动和精确控制的能力。然而,选择路由路径时的主要挑战是根据预期路径或分裂和路由子液滴的拥塞来决定丢弃液滴,并将它们合并在其各自的目的地。随着AM-EWOD芯片中的微电极的数量大,路径选择问题变得进一步复杂。在本文中,我们提出了一种基于副水平的路由的谈判引导流程,该流量消除了何时进行操纵液滴的明确要求,但充分利用液滴重塑,分裂和合并它们以方便他们的旅程。所提出的算法降低了路由成本,并在存在多个路由任务的情况下通过分配用于兄弟的子塑料的某些拥塞罚球以及用于异构液滴的流体惩罚,提供更多的自由度。与现有技术相比,它降低了几个基准和随机测试套件的平均到达时间为29%。此外,我们的方法被观察到为所有测试用例提供100%的网络可排水性,而现有和基线路由器在许多情况下未能产生可行的解决方案。我们还提出了一种可靠的模式液滴路由策略,可以通过在最新到达时间支付小额惩罚来减少不可靠的分割操作的数量。

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