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Computer-Aided Design for Microfluidic Chips Based on Multilayer Soft Lithography

机译:基于多层软光刻的微流体芯片的计算机辅助设计

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Microfluidic chips are emerging as a powerful platform for automating biology experiments. As it becomes possible to integrate tens of thousands of components on a single chip, researchers will require design automation tools to push the scale and complexity of their designs to match the capabilities of the substrate. However, to date such tools have focused only on droplet-based devices, leaving out the popular class of chips that are based on multilayer soft lithography. In this paper, we develop design automation techniques for microfluidic chips based on multilayer soft lithography. We focus our attention on the control layer, which is driven by pressure actuators to invoke the desired flows on chip. We present a language in which designers can specify the Instruction Set Architecture (ISA) of a microfluidic device. Given an ISA, we automatically infer the locations of valves needed to implement the ISA. We also present novel algorithms for minimizing the number of control lines needed to drive the valves, as well as for routing valves to control ports while admitting sharing between the control lines. To the microfluidic community, we offer a free computer-aided design tool, Micado, which implements a subset of our algorithms as a practical plug-in to AutoCAD. Micado is being used successfully by microfluidic designers. We demonstrate its performance on three realistic chips.
机译:微流体芯片作为自动化生物实验的强大平台。由于可以将数万个组件集成在单个芯片上,研究人员需要设计自动化工具,以推动其设计的规模和复杂性以匹配基板的能力。但是,迄今为止,此类工具仅集中在基于液滴的设备上,留出了基于多层软光刻的流行筹码。本文基于多层软光刻,开发用于微流体芯片的设计自动化技术。我们将注意力集中在控制层上,该控制层由压力致动器驱动,以调用芯片上所需的流量。我们提出了一种设计者可以指定微流体设备的指令集架构(ISA)的语言。鉴于ISA,我们自动推断实现ISA所需的阀门的位置。我们还提出了用于最小化驱动阀门所需的控制线数的新算法,以及在承认控制线之间共享时控制端口的路由阀门。对于微流体社区,我们提供免费的计算机辅助设计工具,云母,它将算法的子集实现为AutoCAD的实用插件。 Micado被Microfluidic Designers成功使用。我们展示了三个现实筹码的表现。

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