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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >Wash Optimization and Analysis for Cross-Contamination Removal Under Physical Constraints in Flow-Based Microfluidic Biochips
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Wash Optimization and Analysis for Cross-Contamination Removal Under Physical Constraints in Flow-Based Microfluidic Biochips

机译:基于流的微流生物芯片中物理约束下的交叉污染去除的洗涤优化和分析

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摘要

Recent advances in flow-based microfluidics have enabled the emergence of biochemistry-on-a-chip as a new paradigm in drug discovery, point-of-care disease diagnosis, and biomolecular recognition. However, these applications in biology and biochemistry require high precision to avoid erroneous assay outcomes and, therefore, are vulnerable to contamination between two fluidic flows with different biochemistries. Moreover, to wash contaminated sites, the buffer solution in flow-based biochips has to be guided along pre-etched channel networks. In this paper, we propose the first approach for automated wash optimization for contamination removal in flow-based microfluidic biochips. The proposed approach targets the generation of washing pathways to clean all contaminated microchannels with minimum execution time under physical constraints. Two representative and fabricated biochips are used to evaluate the proposed washing method. Compared with a baseline approach, the proposed approach leads to more efficient washing in all cases.
机译:基于流的微流控技术的最新进展使得片上生物化学的出现成为药物发现,即时护理疾病诊断和生物分子识别的新范例。然而,这些在生物学和生物化学中的应用要求高精度以避免错误的测定结果,因此容易受到具有不同生物化学性质的两种流体流之间的污染的影响。而且,为了清洗受污染的部位,必须沿蚀刻前的通道网络引导基于流的生物芯片中的缓冲溶液。在本文中,我们提出了第一种自动清洗优化方法,用于基于流的微流控生物芯片中的污染物去除。所提出的方法的目标是产生清洗路径,以在物理约束下以最少的执行时间来清洗所有受污染的微通道。两个代表性的和制造的生物芯片用于评估所提出的洗涤方法。与基线方法相比,所提出的方法在所有情况下均能更有效地进行清洗。

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