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基于微流控装置的颗粒计数方法

Particle Counting Methods Based on Microfluidic Devices.

作者信息

Dang Zenglin, Jiang Yuning, Su Xin, Wang Zhihao, Wang Yucheng, Sun Zhe, Zhao Zheng, Zhang Chi, Hong Yuming, Liu Zhijian

机构信息

College of Marine Engineering, Dalian Maritime University, Dalian 116026, China.

College of Marine Electrical Engineering, Dalian Maritime University, Dalian 116026, China.

出版信息

Micromachines (Basel). 2023 Sep 1;14(9):1722. doi: 10.3390/mi14091722.

Abstract

Particle counting serves as a pivotal constituent in diverse analytical domains, encompassing a broad spectrum of entities, ranging from blood cells and bacteria to viruses, droplets, bubbles, wear debris, and magnetic beads. Recent epochs have witnessed remarkable progressions in microfluidic chip technology, culminating in the proliferation and maturation of microfluidic chip-based particle counting methodologies. This paper undertakes a taxonomical elucidation of microfluidic chip-based particle counters based on the physical parameters they detect. These particle counters are classified into three categories: optical-based counters, electrical-based particle counters, and other counters. Within each category, subcategories are established to consider structural differences. Each type of counter is described not only in terms of its working principle but also the methods employed to enhance sensitivity and throughput. Additionally, an analysis of future trends related to each counter type is provided.

摘要

颗粒计数在不同的分析领域中起着关键作用,涵盖了广泛的实体实体实体实体,从血细胞、细菌到病毒、液滴、气泡、磨损颗粒和磁珠。近年来,微流控芯片技术取得了显著进展,最终导致基于微流控芯片的颗粒计数方法的激增和成熟。本文根据它们检测的物理参数,对基于微流控芯片的颗粒计数器进行了分类阐述。这些颗粒计数器分为三类:基于光学的计数器、基于电学的颗粒计数器和其他计数器。在每个类别中,还设立了子类别以考虑结构差异。每种计数器不仅根据其工作原理进行描述,还介绍了提高灵敏度和通量所采用的方法。此外,还对每种计数器类型的未来趋势进行了分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/399f/10534595/b8c449cd2b53/micromachines-14-01722-g002.jpg

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