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Micro-Electrode-Dot-Array Digital Microfluidic Biochips: Technology, Design Automation, and Test Techniques
期刊文章

Micro-Electrode-Dot-Array Digital Microfluidic Biochips: Technology, Design Automation, and Test Techniques

Zhanwei Zhong, Zipeng Li, Krishnendu Chakrabarty, Tsung-Yi HoChen-Yi Lee
IEEE Transactions on Biomedical Circuits and Systems
2018

摘要

computer-aided design (CAD) Design automation Digital microfluidics DNA error recovery micro-electrode-dot-array Microelectrodes Optimization Sensors Biomedical Engineering Electrical and Electronic Engineering
Digital microfluidic biochips (DMFBs) are being increasingly used for DNA sequencing, point-of-care clinical diagnostics and immunoassays. DMFBs based on a micro-electrodedot-array (MEDA) architecture have recently been proposed, and fundamental droplet manipulations, e.g., droplet mixing and splitting, have also been experimentally demonstrated on MEDA biochips. There can be thousands of microelectrodes on a single MEDA biochip, and the fine-grained control of nanoliter volumes of biochemical samples and reagents is also enabled by this technology. MEDA biochips offer the benefits of realtime sensitivity, lower cost, easy system integration with CMOS modules, and full automation. This review paper first describes recent design tools for high-level synthesis and optimization of to map bioassay protocols on a MEDA biochip. It then presents the recent advances in scheduling of fluidic operations, placement of fluidic modules, droplet-size aware routing, adaptive error recovery, sample preparation, and various testing techniques. With the help of these tools, biochip users can concentrate on the development of nanoscale bioassays, leaving details of chip optimization and implementation to software tools.

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