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一种带有智能手机读数功能的便携式电池供电微流控阻抗细胞仪:迈向个人健康监测。

A portable battery powered microfluidic impedance cytometer with smartphone readout: towards personal health monitoring.

作者信息

Talukder Niloy, Furniturewalla Abbas, Le Tuan, Chan Matthew, Hirday Shreyas, Cao Xinnan, Xie Pengfei, Lin Zhongtian, Gholizadeh Azam, Orbine Steve, Javanmard Mehdi

机构信息

Department of Electrical and Computer Engineering, Rutgers, The State University of New Jersey, New Brunswick, NJ, USA.

出版信息

Biomed Microdevices. 2017 Jun;19(2):36. doi: 10.1007/s10544-017-0161-8.

Abstract

We present a portable system for personalized blood cell counting consisting of a microfluidic impedance cytometer and portable analog readout electronics, feeding into an analog-to-digital converter (ADC), and being transmitted via Bluetooth to a user-accessible mobile application. We fabricated a microfluidic impedance cytometer with a novel portable analog readout. The novel design of the analog readout, which consists of a lock-in-amplifier followed by a high-pass filter stage for subtraction of drift and DC offset, and a post-subtraction high gain stage, enables detection of particles and cells as small as 1 μm in diameter, despite using a low-end 8-bit ADC. The lock-in-amplifier and the ADC were set up to receive and transmit data from a Bluetooth module. In order to initiate the system, as well as to transmit all of the data, a user friendly mobile application was developed, and a proof-of-concept trial was run on a blood sample. Applications such as personalized health monitoring require robust device operation and resilience to clogging. It is desirable to avoid using channels comparable in size to the particles being detected thus requiring high levels of sensitivity. Despite using low-end off-the-shelf hardware, our sensing platform was capable of detecting changes in impedance as small as 0.032%, allowing detection of 3 μm diameter particles in a 300 μm wide channel. The sensitivity of our system is comparable to that of a high-end bench-top impedance spectrometer when tested using the same sensors. The novel analog design allowed for an instrument with a footprint of less than 80 cm. The aim of this work is to demonstrate the potential of using microfluidic impedance spectroscopy for low cost health monitoring. We demonstrated the utility of the platform technology towards cell counting, however, our platform is broadly applicable to assaying wide panels of biomarkers including proteins, nucleic acids, and various cell types.

摘要

我们展示了一种用于个性化血细胞计数的便携式系统,该系统由微流控阻抗细胞仪和便携式模拟读出电子设备组成,输入到模数转换器(ADC)中,并通过蓝牙传输到用户可访问的移动应用程序。我们制造了一种具有新型便携式模拟读出功能的微流控阻抗细胞仪。模拟读出的新颖设计包括一个锁相放大器,其后是用于减去漂移和直流偏移的高通滤波器级,以及一个减法后的高增益级,尽管使用的是低端8位ADC,但仍能够检测直径小至1μm的颗粒和细胞。锁相放大器和ADC设置为从蓝牙模块接收和传输数据。为启动该系统并传输所有数据,开发了一个用户友好的移动应用程序,并对一份血样进行了概念验证试验。诸如个性化健康监测之类的应用需要稳健的设备操作和抗堵塞能力。希望避免使用与被检测颗粒尺寸相当的通道,因此需要高灵敏度。尽管使用的是低端现成硬件,但我们的传感平台能够检测低至0.032%的阻抗变化,从而能够在300μm宽的通道中检测直径为3μm的颗粒。使用相同传感器进行测试时,我们系统的灵敏度与高端台式阻抗光谱仪相当。新颖的模拟设计使仪器占地面积小于80平方厘米。这项工作的目的是展示使用微流控阻抗光谱进行低成本健康监测的潜力。我们展示了该平台技术在细胞计数方面的实用性,然而,我们的平台广泛适用于检测包括蛋白质、核酸和各种细胞类型在内的多种生物标志物。

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