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基于微流控技术的血流中红细胞浓度新型光学定量分析

Microfluidic-Based Novel Optical Quantification of Red Blood Cell Concentration in Blood Flow.

作者信息

Wang Yudong, Nunna Bharath Babu, Talukder Niladri, Lee Eon Soo

机构信息

Advanced Energy Systems and Microdevices Laboratory, Department of Mechanical and Industrial Engineering, New Jersey Institute of Technology, Newark, NJ 07102, USA.

Department of Mechanical Engineering, Weber State University, Ogden, UT 84408, USA.

出版信息

Bioengineering (Basel). 2022 Jun 8;9(6):247. doi: 10.3390/bioengineering9060247.

Abstract

The optical quantification of hematocrit (volumetric percentage of red blood cells) in blood flow in microfluidic systems provides enormous help in designing microfluidic biosensing platforms with enhanced sensitivity. Although several existing methods, such as centrifugation, complete blood cell count, etc., have been developed to measure the hematocrit of the blood at the sample preparation stage, these methods are impractical to measure the hematocrit in dynamic microfluidic blood flow cases. An easy-to-access optical method has emerged as a hematocrit quantification technique to address this limitation, especially for the microfluidic-based biosensing platform. A novel optical quantification method is demonstrated in this study, which can measure the hematocrit of the blood flow at a targeted location in a microchannel at any given instant. The images of the blood flow were shot using a high-speed camera through an inverted transmission microscope at various light source intensities, and the grayscale of the images was measured using an image processing code. By measuring the average grayscale of the images of blood flow at different luminous exposures, a relationship between hematocrit and grayscale has been developed. The quantification of the hematocrit in the microfluidic system can be instant and easy with this method. The innovative proposed technique has been evaluated with porcine blood samples with hematocrit ranging from 5% to 70%, flowing through 1000 µm wide and 100 µm deep microchannels. The experimental results obtained strongly supported the proposed optical technique of hematocrit measurement in microfluidic systems.

摘要

在微流控系统中对血流中的血细胞比容(红细胞的体积百分比)进行光学定量,为设计具有更高灵敏度的微流控生物传感平台提供了极大的帮助。尽管已经开发了几种现有方法,如离心法、全血细胞计数法等,用于在样品制备阶段测量血液的血细胞比容,但这些方法在动态微流控血流情况下测量血细胞比容是不切实际的。一种易于使用的光学方法已成为一种血细胞比容定量技术,以解决这一局限性,特别是对于基于微流控的生物传感平台。本研究展示了一种新颖的光学定量方法,该方法可以在任何给定时刻测量微通道中目标位置处血流的血细胞比容。使用高速相机通过倒置透射显微镜在不同光源强度下拍摄血流图像,并使用图像处理代码测量图像的灰度。通过测量不同曝光下血流图像的平均灰度,建立了血细胞比容与灰度之间的关系。使用这种方法可以即时且轻松地对微流控系统中的血细胞比容进行定量。所提出的创新技术已通过血细胞比容范围为5%至70%的猪血样本进行评估,这些样本流经宽度为1000 µm、深度为100 µm的微通道。获得的实验结果有力地支持了所提出的微流控系统中血细胞比容测量的光学技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef35/9219653/7d66678474c3/bioengineering-09-00247-g001.jpg

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