数字微流控生物芯片的需求驱动混合液制备和液滴流

Sudip Roy, Srijan Kumar, P. Chakrabarti, B. Bhattacharya, K. Chakrabarty
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引用次数: 12

摘要

在许多生化方案中,如聚合酶链反应,需要重复使用一定比例的液体混合物,因此必须提供足够数量的混合物以完成分析。现有的基于数字微流体(DMF)的样品制备算法一次发射两个目标液滴,并且需要多次发射以维持混合液滴的发射。为了缓解这一问题,我们在DMF生物芯片上设计了一个流引擎,该引擎根据需求和可用存储来优化液滴排放。模拟结果表明,混合制备的延迟和反应物使用量显著减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Demand-driven mixture preparation and droplet streaming using digital microfluidic biochips
In many biochemical protocols, such as polymerase chain reaction, a mixture of fluids in a certain ratio is repeatedly required, and hence a sufficient quantity of the mixture must be supplied for assay completion. Existing sample-preparation algorithms based on digital microfluidics (DMF) emit two target droplets in one pass, and costly multiple passes are required to sustain the emission of the mixture droplet. To alleviate this problem, we design a streaming engine on a DMF biochip, which optimizes droplet emission depending on the demand and available storage. Simulation results show significant reduction in latency and reactant usage for mixture preparation.
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