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Design, testing, and applications of digital microfluidics-based biochips

机译:基于数字微流控的生物芯片的设计,测试和应用

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Microfluidics-based biochips offer a promising platform for massively parallel DNA analysis, automated drug discovery, and real-time biomolecular recognition. The first part of this paper introduces readers to digital microfluidics technology. The second part describes a recent technique for the automated design and synthesis of biochips. A clinical diagnostic procedure, namely multiplexed in-vitro diagnostics on human physiological fluids, is used to illustrate the design approach. The third part of the embedded tutorial is focused on test issues. It is important to ensure high reliability and availability of biochips as they are increasingly deployed for safety-critical applications. The tutorial includes a discussion of fault models, catastrophic fault testing, and concurrent test issues.
机译:基于微流体的生物芯片为大规模并行DNA分析,自动药物发现和实时生物分子识别提供了一个有前途的平台。本文的第一部分向读者介绍了数字微流体技术。第二部分介绍了用于自动设计和合成生物芯片的最新技术。临床诊断程序,即对人体生理流体的体外多重诊断,用于说明设计方法。嵌入式教程的第三部分侧重于测试问题。随着生物芯片越来越多地用于安全关键型应用中,确保生物芯片的高可靠性和可用性非常重要。本教程包括故障模型,灾难性故障测试和并发测试问题的讨论。

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