基于流动的微流控生物芯片故障诊断

Kai Hu, B. Bhattacharya, K. Chakrabarty
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引用次数: 10

摘要

基于流动的微流体技术的进步使得生物化学芯片可以用于DNA测序、药物发现和即时疾病诊断。然而,使用软光刻技术制造的芯片中经常出现的缺陷阻碍了基于流动的生物芯片的采用。现在需要故障诊断方法来改进制造工艺,并促进(部分)使用有缺陷的芯片。我们提出了第一种基于流动的微流体生物芯片的自动诊断方法。所提出的方法便于通过综合征分析和命中集问题的表述来识别缺陷。利用三种制备的生物芯片对所提出的技术进行了评估,并在所有情况下实现了精确的缺陷定位和缺陷类型识别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault diagnosis for flow-based microfluidic biochips
Advances in flow-based microfluidics allow biochemistry-on-a-chip for DNA sequencing, drug discovery, and point-of-care disease diagnosis. However, the adoption of flow-based biochips is hampered by defects that frequently occur in chips fabricated using soft lithography techniques. Fault diagnosis methods are now needed to improve fabrication processes and facilitate the (partial) use of chips that have defects. We present the first approach for the automated diagnosis of flow-based microfluidic biochips. The proposed method facilitates the identification of defects through syndrome analysis and a hitting-set problem formulation. The proposed technique is evaluated using three fabricated biochips, and exact defect localization and identification of the defect type is achieved in all cases.
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