微电流体生物芯片参数变化效应分析与提取

Bao Liu
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引用次数: 0

摘要

微流控生物芯片需要持续的在线测试,以确保其功能,性能和可靠性,在运行时参数变化和系统磨损的存在。以前的技术定位灾难性缺陷,指导后续的液滴调度和路由程序。然而,微流控生物芯片上的大量缺陷是参数变化,将它们视为灾难性缺陷会导致错误地识别缺陷位置,从而影响液滴的调度和路由。本文首次提出了微流控生物芯片上存在参数变化的故障细胞传递后液滴连续运动的表征方法,并首次提出了微流控生物芯片参数变化提取方法,定位了导致不可恢复液滴速度损失的关键细胞。所提出的技术可以更好地表征液滴运动的参数变化,并实现微流控生物芯片上液滴调度和路由的性能优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and extraction of parametric variation effects on microelectrofluidics-based biochips
Microfluidic biochips require continued online test to ensure their functionality, performance, and reliability in the presence of runtime parametric variation and system wear-out. Previous techniques locate catastrophic defects which guide subsequent droplet scheduling and routing procedures. However, a significant number of defects on a microfluidic biochip are parametric variations, taking them as catastrophic defects leads to incorrectly identified defect locations, which compromises droplet scheduling and routing. This paper presents the first characterization method for continous droplet movement after passing a faulty cell on a microfluidic biochip in the presence of parametric variations, and the first microfluidic biochip parametric variation extraction method locating the critical cells which originate un-recoverable droplet speed loss. The proposed techniques provide better characterization of parametric variations in droplet movement, and enable performance optimization in droplet scheduling and routing on a microfluidic biochip.
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