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首页> 外文期刊>Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on >Testing of Flow-Based Microfluidic Biochips: Fault Modeling, Test Generation, and Experimental Demonstration
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Testing of Flow-Based Microfluidic Biochips: Fault Modeling, Test Generation, and Experimental Demonstration

机译:基于流的微流生物芯片测试:故障建模,测试生成和实验演示

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摘要

Recent advances in flow-based microfluidics have led to the emergence of biochemistry-on-a-chip as a new paradigm in clinical diagnostics and biomolecular recognition. However, a potential roadblock in the deployment of microfluidic biochips is the lack of test techniques to screen defective devices before they are used for biochemical analysis. Defective chips lead to repetition of experiments, which is undesirable due to high reagent cost and limited availability of samples. Prior work on fault detection in biochips has been limited to digital (“droplet”) microfluidics and other electrode-based technology platforms. The paper proposes the first approach for automated testing of flow-based microfluidic biochips that are designed using membrane-based valves for flow control. The proposed test technique is based on a behavioral abstraction of physical defects in microchannels and valves. The flow paths and flow control in the microfluidic device are modeled as a logic circuit composed of Boolean gates, which allows test generation to be carried out using standard automatic test pattern generation tools. The tests derived using the logic circuit model are then mapped to fluidic operations involving pumps and pressure sensors in the biochip. Feedback from pressure sensors can be compared to expected responses based on the logic circuit model, whereby the types and positions of defects are identified. We show how a fabricated biochip can be tested using the proposed method, and demonstrate experimental results for two additional fabricated chips.
机译:基于流的微流控技术的最新进展导致了片上生物化学的出现,作为临床诊断和生物分子识别的新范例。但是,在微流控生物芯片的部署中,潜在的障碍是缺乏用于将有缺陷的设备用于生化分析之前对其进行筛选的测试技术。芯片有缺陷会导致重复实验,由于试剂成本高和样品供应有限,这是不希望的。生物芯片故障检测的先前工作仅限于数字(“液滴”)微流体技术和其他基于电极的技术平台。本文提出了一种自动测试基于流的微流生物芯片的方法,该芯片是使用基于膜的阀进行流控制的。提议的测试技术基于微通道和阀门中物理缺陷的行为抽象。微流控设备中的流路和流控制被建模为由布尔门组成的逻辑电路,从而可以使用标准的自动测试模式生成工具来进行测试生成。然后,将使用逻辑电路模型得出的测试映射到涉及生物芯片中的泵和压力传感器的流体操作。可以基于逻辑电路模型将压力传感器的反馈与预期响应进行比较,从而确定缺陷的类型和位置。我们展示了如何使用所提出的方法测试生物芯片,并演示了另外两种生物芯片的实验结果。

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