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Portable Cytometry Using Microscale Electronic Sensing

机译:使用微尺度电子传感的便携式细胞计数

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摘要

In this manuscript, we present three different micro-impedance sensing architectures for electronic counting of cells and beads. The first method of sensing is based on using an open circuit sensing electrode integrated in a micro-pore, which measures the shift in potential as a micron-sized particle passes through. Our micro-pore, based on a funnel shaped microchannel, was fabricated in PDMS and was bound covalently to a glass substrate patterned with a gold open circuit electrode. The amplification circuitry was integrated onto a battery-powered custom printed circuit board. The second method is based on a three electrode differential measurement, which opens up the potential of using signal processing techniques to increase signal to noise ratio post measurement. The third architecture uses a contactless sensing approach, which significantly minimizes the cost of the consumable component of the impedance cytometer. We demonstrated proof of concept for the three sensing architectures by measuring the detected signal due to the passage of micron sized beads through the pore.
机译:在此手稿中,我们介绍了三种不同的微阻抗传感体系结构,用于细胞和珠子的电子计数。第一种传感方法是基于使用集成在微孔中的开路传感电极,该电极可测量微米级粒子通过时的电位偏移。我们的微孔基于漏斗形微通道,是在PDMS中制造的,并共价键合到带有金开路电极的玻璃基板上。放大电路被集成到电池供电的定制印刷电路板上。第二种方法基于三电极差分测量,这打开了使用信号处理技术来提高测量后信噪比的潜力。第三种架构使用非接触式感应方法,可显着降低阻抗细胞仪可消耗组件的成本。我们通过测量由于微米尺寸的珠子穿过孔而产生的检测信号,证明了这三种传感体系结构的概念验证。

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