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On-Line Testing of Lab-on-Chip Using Reconfigurable Digital-Microfluidic Compactors

机译:使用可重构数字微流体压实机的片上实验室在线测试

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Dependability is an important system attribute for microfluidic lab-on-chip devices. On-line testing offers a promising method for detecting defects, fluidic abnormalities, and bioassay malfunctions during chip operation. However, previous techniques for reading test outcomes and analyzing pulse sequences are cumbersome, sensitive to the calibration of capacitive sensors, and error-prone. We present a built-in self-test (BIST) method for on-line testing of digital microfluidic lab-on-chip. This method utilizes microfluidic compactors based on droplet-based AND gates, which are implemented using digital microfluidics. An optimization method is proposed to schedule logic AND operations in the compactor to minimize the end time for the compaction procedure. Dynamic reconfiguration of these compactors ensures low area overhead and it allows BIST to be interleaved with bioassays in functional mode. We evaluate the on-line testing method using a multiplexed in vitro diagnostics bioassay.
机译:可靠性是微流控芯片实验室设备的重要系统属性。在线测试提供了一种有前途的方法来检测芯片操作过程中的缺陷,流体异常和生物测定故障。但是,用于读取测试结果和分析脉冲序列的先前技术麻烦,对电容式传感器的校准敏感并且容易出错。我们提出了一种内置的自测(BIST)方法,用于数字微流控芯片实验室的在线测试。该方法利用基于液滴的AND门的微流体压实器,该压实器是使用数字微流体技术实现的。提出了一种优化方法来调度压缩器中的逻辑“与”操作,以使压缩过程的结束时间最小化。这些压实机的动态重新配置可确保较低的区域开销,并且允许BIST与功能模式下的生物测定交错。我们评估使用多重体外诊断生物测定的在线测试方法。

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