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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >High-throughput and sensitive particle counting by a novel microfluidic differential resistive pulse sensor with multidetecting channels and a common reference channel
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High-throughput and sensitive particle counting by a novel microfluidic differential resistive pulse sensor with multidetecting channels and a common reference channel

机译:通过具有多个检测通道和公共参考通道的新型微流体差分电阻式脉冲传感器实现高通量和灵敏的颗粒计数

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摘要

High-throughput particle counting by a differential resistive pulse sensing method in a microfluidic chip is presented in this paper. A sensitive differential microfluidic sensor with multiple detecting channels and one common reference channel was devised. To test the particle counting performance of this chip, an experimental system which consists of the microfluidic chip, electric resistors, an amplification circuit, a LabView based data acquisition device was developed. The influence of the common reference channel on the S/N of particle detection was investigated. The relationship between the hydraulic pressure drop applied across the detecting channel and the counting throughput was experimentally obtained. The experimental results show that the reference channel designed in this work can improve the S/N by ten times, thus enabling sensitive high-throughput particle counting. Because of the greatly improved S/N, the sensing gate with a size of 25 x 50 x 10 mu m (W x L x H) in our chips can detect and count particles larger than 1.5 mu m in diameter. The counting throughput increases with the increase in the flowing velocity of the sample solution. An average throughput of 7140/min under a flow rate of 10 mu L/min was achieved. Comparing with other methods, the structure of the chip and particle detecting mechanism reported in this paper is simple and sensitive, and does not have the crosstalking problem. Counting throughput can be adjusted simply by changing the number of the detecting channels.
机译:本文提出了一种通过微流控芯片中的差分电阻脉冲传感方法进行的高通量粒子计数。设计了一种具有多个检测通道和一个公共参考通道的灵敏差分微流体传感器。为了测试该芯片的颗粒计数性能,开发了一个由微流控芯片,电阻器,放大电路和基于LabView的数据采集设备组成的实验系统。研究了公共参考通道对粒子检测信噪比的影响。通过实验获得了跨检测通道施加的液压降与计数通过量之间的关系。实验结果表明,本文设计的参考通道可将信噪比提高十倍,从而实现灵敏的高通量颗粒计数。由于大大提高了信噪比,我们芯片中尺寸为25 x 50 x 10微米(宽x长x高)的感应门可以检测和计数直径大于1.5微米的颗粒。计数通量随着样品溶液流速的增加而增加。在10μL / min的流速下,平均通量为7140 / min。与其他方法相比,本文报道的芯片结构和颗粒检测机制简单,灵敏,不存在串扰问题。可以通过更改检测通道的数量来简单地调整计数吞吐量。

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