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Voltage driven electrowetting based microfluidic operations for efficient droplet routing in digital microfluidic biochips

机译:基于电压驱动的电润湿微流操作,可在数字微流生物芯片中实现有效的液滴布线

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Electrowetting based operation can be effectively used to enhance the performance throughput of the programmable lab-on-chips (LOCs). These chips are also known as digital microfluidic biochips (DMFBs). In this work, initially we have presented a study on the effect of external actuation voltage in various parameters like transport velocity and contact angles during droplet movement on DMFB, in the realm of surface hysteresis. Next, a greedy heuristic method is adopted in conjunction with droplet velocity lookup under varying range of voltage actuation to perform improved droplet routing on digital microfluidic biochips. Here a specified routing time, termed as latest arrival time (LAT) is calculated in an ideal case, without considering practical electrowetting effects. Then a stepwise voltage increment is performed through the droplet routing paths to reach the specified target location in time. Goal of the proposed method is to achieve a specified routing time for all the droplets towards their destinations. Experimental analysis ascertains the suitability of this technique in enhancing the throughput of an LOC in terms of transport time reduction, and elimination of any failed net during routing.
机译:基于电润湿的操作可以有效地用于提高可编程芯片实验室(LOC)的性能吞吐量。这些芯片也称为数字微流体生物芯片(DMFB)。在这项工作中,最初,我们在表面滞后领域中研究了外部激励电压在各种参数(如液滴移动期间在DMFB上的传输速度和接触角)上的影响。接下来,采用贪婪启发式方法结合在不同电压驱动范围内的液滴速度查找,以在数字微流控生物芯片上执行改进的液滴路由。在理想情况下,无需考虑实际的电润湿效果,即可计算出指定的布线时间(称为最新到达时间(LAT))。然后,通过微滴布线路径逐步执行电压增量,以及时到达指定的目标位置。所提出的方法的目的是为所有液滴到达其目的地实现指定的路由时间。实验分析确定了该技术在减少运输时间和消除路由选择过程中任何故障网络方面是否适合提高LOC的吞吐量。

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