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Centrifugo-pneumatic valve for metering of highly wetting liquids on centrifugal microfluidic platforms

机译:离心-气动阀,用于计量离心微流体平台上的高润湿性液体

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摘要

We designed and experimentally validated a new type of passive valve for centrifugal microfluidic platforms. A liquid column entering an unvented receiving chamber is stopped by the counter-pressure of compressed air. This valve opens under defined conditions at high centrifugal frequencies at which the interface between liquid and air becomes unstable and enables a phase exchange, forwarding the liquid. Burst frequencies of the valve were determined for liquids typically used in biochemical assays: pure water, water with detergent concentrations between 0.01 and 10%, and pure ethanol. Burst frequencies between 8.5 ± 0.6 and 27.9 ± 2.0 Hz were measured for different surface tensions. The burst frequencies can be tuned by simple geometrical changes in the valving structure. The valve does not require ultra-precise structures or local surface modifications and is therefore ideal for low-cost microfluidic polymer disks. Potential applications are in the field of multiparameter and panel analysis, such as PCR-genotyping.
机译:我们设计并通过实验验证了用于离心微流控平台的新型被动阀。进入未通风的接收腔的液柱通过压缩空气的反压而停止运行。该阀在特定条件下以高离心频率打开,在该频率下,液体和空气之间的界面变得不稳定,并能够进行相交换,从而使液体前进。针对生化分析中通常使用的液体,确定了阀门的爆裂频率:纯净水,洗涤剂浓度在0.01%至10%之间的水以及纯净乙醇。对于不同的表面张力,测量了8.5±0.6至27.9±2.0 Hz的突发频率。脉冲频率可以通过阀门结构中的简单几何变化来调节。该阀不需要超精密结构或局部表面修饰,因此非常适合低成本微流体聚合物圆盘。潜在的应用在多参数和面板分析领域,例如PCR基因分型。

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