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基于光伏电池的微流控细胞仪的粒子小角度前向散射光测量

Particles small angle forward-scattered light measurement based on photovoltaic cell microflow cytometer.

作者信息

Chen Han-Taw, Fu Lung-Ming, Huang Hsing-Hui, Shu Wei-En, Wang Yao-Nan

机构信息

Department of Mechanical Engineering, National Cheng-Kung University, Tainan, Taiwan.

出版信息

Electrophoresis. 2014 Feb;35(2-3):337-44. doi: 10.1002/elps.201300189. Epub 2013 Oct 10.

Abstract

A method is proposed for detecting microparticles in a microflow cytometer by means of small angle forward-scattered light measurements. The proposed cytometer comprises a commercial photovoltaic cell, an adjustable power laser module, and a PDMS microfluidic chip. The detection performance of the proposed device is evaluated using particles with dimensions of 5, 8, 10, and 15 μm, respectively, given forward-light scattering angles of 5 and 8° and laser powers ranging from 15-25 mW. It is shown that for a constant laser power and particle size, the S/N of the detected light signal increases with a reducing forward-scattering angle. Moreover, for a constant forward-scattering angle and particle size, the S/N increases with an increasing laser power. The intensity of the forward-scattered light signal is found to vary linearly with the particle size and has a correlation coefficient of R(2) = 0.967, 0.967, and 0.963 given laser powers of 15, 20, and 25 mW, respectively, and a forward-scattering angle of 5°. Moreover, the CV of the forward-scattered light intensity is found to lie within the range of 20-30% for both forward-scattering angles. Overall, the present results suggest that the proposed device has significant potential for detection applications in the medical, environmental monitoring, and biological science fields.

摘要

提出了一种通过小角度前向散射光测量来检测微流控细胞仪中微粒的方法。所提出的细胞仪包括一个商用光伏电池、一个可调功率激光模块和一个聚二甲基硅氧烷(PDMS)微流控芯片。使用尺寸分别为5、8、10和15μm的微粒,在5°和8°的前向光散射角以及15 - 25 mW的激光功率下,对所提出装置的检测性能进行了评估。结果表明,对于恒定的激光功率和粒径,检测到的光信号的信噪比随着前向散射角的减小而增加。此外,对于恒定的前向散射角和粒径,信噪比随着激光功率的增加而增加。发现前向散射光信号的强度与粒径呈线性变化,在激光功率分别为15、20和25 mW且前向散射角为5°时,相关系数分别为R(2) = 0.967、0.967和0.963。此外,对于两个前向散射角,前向散射光强度的变异系数(CV)都在20 - 30%的范围内。总体而言,目前的结果表明,所提出的装置在医学、环境监测和生物科学领域的检测应用中具有巨大潜力。

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