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Programmable diagnostic devices made from paper and tape
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Programmable diagnostic devices made from paper and tape

Andres W. Martinez, Scott T. Phillips, Zhihong Nie, Chao-Min Cheng, Emanuel Carrilho, Benjamin J. WileyGeorge M. Whitesides
Lab on a Chip, 卷.10(19), 頁碼.2499-2504
10/2010

摘要

Bioengineering Chemistry (all) Biochemistry Biomedical Engineering
This paper describes three-dimensional microfluidic paper-based analytical devices (3-D PADs) that can be programmed (postfabrication) by the user to generate multiple patterns of flow through them. These devices are programmed by pressing single-use 'on' buttons, using a stylus or a ballpoint pen. Pressing a button closes a small space (gap) between two vertically aligned microfluidic channels, and allows fluids to wick from one channel to the other. These devices are simple to fabricate, and are made entirely out of paper and double-sided adhesive tape. Programmable devices expand the capabilities of PADs and provide a simple method for controlling the movement of fluids in paper-based channels. They are the conceptual equivalent of field-programmable gate arrays (FPGAs) widely used in electronics. © 2010 The Royal Society of Chemistry.

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https://doi.org/10.1039/c0lc00021c檢視
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