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Electronic drop sensing in microfluidic devices: automated operation of a nanoliter viscometer

机译:微流控设备中的电子液滴传感:纳升粘度计的自动化操作

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摘要

We describe three droplet sensing techniques: a digital electrode,an analog electrode,and a thermal method.All three techniques use a single layer of metal lines that is easy to microfabricate and an electronic signal can be produced using low DC voltages.While the electrode methods utilize changes in electrical conductivity when the air/liquid interface of the droplet passes over a pair of electrodes,the thermal method is based on convective heat loss from a locally heated region.For the electrode method,the analog technique is able to detect 25 nL droplets while the digital technique is capable of detecting droplets as small as 100 pL.For thermal sensing,temperature profiles in the range of 36 deg C and higher were used.Finally,we have used the digital electrode method and an array of electrodes located at preset distances to automate the operation of a previously described microfluidic viscometer.The viscometer is completely controlled by a laptop computer,and the total time for operation including setup,calibration,sample addition and viscosity calculation is approximately 4 minutes.
机译:我们描述了三种液滴感测技术:数字电极,模拟电极和热敏方法。所有这三种技术均使用易于微制造的单层金属线,并且可以在低直流电压下产生电子信号。当液滴的空气/液体界面通过一对电极时,该方法利用电导率的变化;热方法基于局部加热区域的对流热损失。对于电极方法,模拟技术能够检测25 nL小滴,而数字技术能够检测到小至100 pL的小滴。对于热感测,使用的温度范围为36摄氏度或更高。最后,我们使用了数字电极法,并使用了一系列电极在预设距离处自动操作先前描述的微流体粘度计。该粘度计完全由便携式计算机控制,操作总时间包括设置,校准,样​​品添加和粘度计算在内的定量约为4分钟。

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