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An Integrated Artificial Cilia Based Microfluidic Device for Micropumping and Micromixing Applications
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An Integrated Artificial Cilia Based Microfluidic Device for Micropumping and Micromixing Applications

Yu-An Wu, Bivas Panigrahi, Yueh-Hsun LuChia-Yuan Chen
Micromachines (Basel), 卷.8(9), 頁碼.1-11
24/08/2017
PMID: 30400450
Web of Science ID: WOS:000411523200002

摘要

micropropulsion hydrodynamics micromixing micro-particle image velocimetry (µPIV) artificial cilia
A multi-purpose microfluidic device that can be used for both micromixing and micropropulsion operations has always been in demand, as it would simplify the various process flows associated with the current micro-total analysis systems. In this aspect, we propose a biomimetic artificial cilia-based microfluidic device that can efficiently facilitate both mixing and propulsion sequentially at the micro-scale. A rectangular microfluidic device consists of four straight microchannels that were fabricated using the microfabrication technique. An array of artificial cilia was embedded within one of the channel's confinement through the aforementioned technique. A series of image processing and micro-particle image velocimetry technologies were employed to elucidate the micromixing and micropropulsion phenomena. Experiment results demonstrate that, with this proposed microfluidic device, a maximum micromixing efficiency and flow rate of 0.84 and 0.089 µL/min, respectively, can be achieved. In addition to its primary application as a targeted drug delivery system, where a drug needs to be homogeneously mixed with its carrier prior to its administration into the target body, this microfluidic device can be used as a micro-total analysis system for the handling of other biological specimens.

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url
https://doi.org/10.3390/mi8090260檢視
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