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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Hardware Design and Fault-Tolerant Synthesis for Digital Acoustofluidic Biochips
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Hardware Design and Fault-Tolerant Synthesis for Digital Acoustofluidic Biochips

机译:数字声流体生物芯片的硬件设计和容错合成

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摘要

A digital microfluidic biochip (DMB) is an attractive platform for automating laboratory procedures in microbiology. To overcome the problem of cross-contamination due to fouling of the electrode surface in traditional DMBs, a contactless liquid-handling biochip technology, referred to as acoustofluidics, has recently been proposed. A major challenge in operating this platform is the need for a control signal of frequency 24 MHz and voltage range +/- 10/ +/- 20 V to activate the IDT units in the biochip. In this paper, we present a hardware design that can efficiently activate/de-activated each IDT, and can fully automate an bio-protocol. We also present a fault-tolerant synthesis technique that allows us to automatically map biomolecular protocols to acoustofluidic biochips. We develop and experimentally validate a velocity model, and use it to guide co-optimization for operation scheduling, module placement, and droplet routing in the presence of IDT faults. Simulation results demonstrate the effectiveness of the proposed synthesis method. Our results are expected to open new research directions on design automation of digital acoustofluidic biochips.
机译:数字微流体Biochip(DMB)是一种有吸引力的自动化微生物学程序的平台。为了克服传统DMBS中电极表面的污垢导致的交叉污染问题,最近已经提出了由传统DMBS中的电极表面的污垢,其被称为声学流体的非接触式液体处理Biochip技术。操作该平台的主要挑战是需要24 MHz的控制信号和电压范围+/- 10 / +/-20V,以激活Biochip中的IDT单元。在本文中,我们介绍了一种硬件设计,可以有效地激活/去激活每个IDT,并可以完全自动化生物协议。我们还提供了一种容错的合成技术,使我们能够自动将生物分子协议映射到声毒流体生物芯片。我们开发和实验验证速度模型,并使用它来指导IDT故障存在的操作调度,模块放置和液滴路由的协同优化。仿真结果证明了所提出的合成方法的有效性。我们的结果预计将开辟数字声流体生物芯片设计自动化的新研究方向。

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