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通过简单的管振动实现微流控系统中可调谐的谐波流动模式。

Tunable Harmonic Flow Patterns in Microfluidic Systems through Simple Tube Oscillation.

机构信息

School of Engineering, RMIT University, Melbourne, VIC, 3000, Australia.

Population Health and Immunity Division, The Walter and Eliza Hall Institute of Medical Research, Parkville, Australia and Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, Parkville, VIC, 3052, Australia.

出版信息

Small. 2020 Oct;16(43):e2003612. doi: 10.1002/smll.202003612. Epub 2020 Oct 1.

Abstract

Generation of tunable harmonic flows at low cost in microfluidic systems is a persistent and significant obstacle to this field, substantially limiting its potential to address major scientific questions and applications. This work introduces a simple and elegant way to overcome this obstacle. Harmonic flow patterns can be generated in microfluidic structures by simply oscillating the inlet tubes. Complex rib and vortex patterns can be dynamically modulated by changing the frequency and magnitude of tube oscillation and the viscosity of liquid. Highly complex rib patterns and synchronous vortices can be generated in serially connected microfluidic chambers. Similar dynamic patterns can be generated using whole or diluted blood samples without damaging the sample. This method offers unique opportunities for studying complex fluids and soft materials, chemical synthesis of various compounds, and mimicking harmonic flows in biological systems using compact, tunable, and low-cost devices.

摘要

在微流控系统中以低成本产生可调谐的谐波流是该领域长期存在的重大障碍,极大地限制了其解决重大科学问题和应用的潜力。本工作介绍了一种简单而优雅的克服该障碍的方法。通过简单地振荡入口管,可在微流控结构中产生谐波流模式。通过改变管振荡的频率和幅度以及液体的粘度,可以动态调制复杂的肋和涡旋模式。在串联的微流控腔室中可产生高度复杂的肋图案和同步涡旋。使用完整或稀释的血液样本而不会损坏样本,也可以产生类似的动态图案。该方法为研究复杂流体和软材料、各种化合物的化学合成以及使用紧凑、可调谐且低成本的装置模拟生物系统中的谐波流提供了独特的机会。

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