2017
DOI: 10.1021/acs.analchem.7b01315
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Microfluidic Capillaric Circuit for Rapid and Facile Bacteria Detection

Abstract: Urinary tract infections (UTI) are one of the most common bacterial infections and would greatly benefit from a rapid point-of-care diagnostic test. Although significant progress has been made in developing microfluidic systems for nucleic acid and whole bacteria immunoassay tests, their practical application is limited by complex protocols, bulky peripherals, and slow operation. Here we present a microfluidic capillaric circuit (CC) optimized for rapid and automated detection of bacteria in urine. Molds for C… Show more

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Cited by 54 publications
(51 citation statements)
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“…3D stereolithographic printing was used to fabricate an array of capillaric elements and circuits with a turnaround time of tens of minutes and at material costs of a few dollars 44 and have already shown the potential for clinically-relevant applications. 45 CCs made by rapid …”
Section: Three Waves Of Developmentmentioning
confidence: 99%
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“…3D stereolithographic printing was used to fabricate an array of capillaric elements and circuits with a turnaround time of tens of minutes and at material costs of a few dollars 44 and have already shown the potential for clinically-relevant applications. 45 CCs made by rapid …”
Section: Three Waves Of Developmentmentioning
confidence: 99%
“…Inlets can be designed to avoid corner flow by literally removing them, and using virtual inlets without any features and applying liquids directly to a narrow conduit protruding laterally beyond the edge of the cover. 45 Rounded inlets can also be milled as vertical holes in the microchip cover (or from the back of the chip) to provide large and easy to manufacture rounded features. Inlets are a simple, yet essential part of CCs and attention to detail is required to ensure that their design is user-friendly without interfering with subsequent fluidic operations.…”
Section: Inletmentioning
confidence: 99%
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