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Structural Test and Functional Test for Digital Acoustofluidic Biochips

机译:数字声毒流体生物芯片的结构测试和功能测试

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A digital microfluidic biochip (DMB) is an attractive platform for automating laboratory procedures in microbiology. However, a major problem associated with today's DMBs is the risk of cross-contamination due to undesirable fouling of the electrode surface, i.e., droplet materials stick to the surface. To overcome the above problem, a contactless liquid-handling biochip technology referred to as acoustofluidics has recently been proposed, and droplet manipulations on acoustofluidic biochips have also been experimentally demonstrated. In order to ensure robust fluidic operations and high confidence in the outcome of biochemical experiments, acoustofluidic biochips must be adequately tested before they are used for bioassay execution. This paper presents the first approach for testing of an acoustofluidic biochip that includes an array of interdigital transducers (IDTs). We first present structural test techniques to evaluate the pass/fail status of each IDT, and identify the type of fault if it fails. In order to ensure correct operation of functional units, e.g., mixers and routers, we also present functional test techniques to address fundamental acoustofluidic operations such as droplet transportation and droplet mixing. We evaluate the proposed test methods using experiments on fabricated acoustofluidic biochips.
机译:数字微流体Biochip(DMB)是一种有吸引力的自动化微生物学程序的平台。然而,与当今DMBS相关的主要问题是由于电极表面的不希望的污垢,即液滴材料粘附到表面上的横污染的风险。为了克服上述问题,最近提出了一种被称为声毒流体的非接触式液体处理生物芯片技术,并且还在实验上证明了对杂散生物芯片的液滴操纵。为了确保生化实验结果的耐柔软的流体操作和高置信度,必须在用于生物测定执行之前充分测试声杂散生物芯片。本文介绍了一种用于测试偏移流体生物芯片的第一种方法,包括一系列叉指传感器(IDT)。我们首先提出结构测试技术来评估每个IDT的通过/失败状态,并如果失败,则识别故障类型。为了确保功能单元的正确操作,例如混合器和路由器,我们还提出了功能测试技术,以解决液滴输送和液滴混合等基本声杂交作用。我们使用实验评估所提出的试验方法对制造的声毒流体生物芯片。

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