气泡
微通道
微流控
存水弯(水管)
俘获
液体气泡
材料科学
机械
润湿
纳米技术
平版印刷术
软光刻
液氮
缩放比例
级联
化学
光电子学
复合材料
色谱法
环境科学
物理
制作
病理
生态学
数学
有机化学
环境工程
生物
医学
替代医学
几何学
作者
Conrad Lochovsky,Sanjesh Yasotharan,Axel Günther
出处
期刊:Lab on a Chip
[Royal Society of Chemistry]
日期:2011-12-13
卷期号:12 (3): 595-601
被引量:126
摘要
Gas bubbles present a frequent challenge to the on-chip investigation and culture of biological cells and small organs. The presence of a single bubble can adversely impair biological function and often viability as it increases the wall shear stress in a liquid-perfused microchannel by at least one order of magnitude. We present a microfluidic strategy for in-plane trapping and removal of gas bubbles with volumes of 0.1-500 nL. The presented bubble trap is compatible with single-layer soft lithography and requires a footprint of less than ten square millimetres. Nitrogen bubbles were consistently removed at a rate of 0.14 μL min(-1). Experiments were complemented with analytical and numerical models to comprehensively characterize bubble removal for liquids with different wetting behaviour. Consistent long-term operation of the bubble trap was demonstrated by removing approximately 4000 bubbles during one day. In a case study, we successfully applied the bubble trap to the on-chip investigation of intact small blood vessels. Scalability of the design was demonstrated by realizing eight parallel traps at a total removal rate of 0.9 μL min(-1) (measured for nitrogen).
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