Automatic elasticity measurement of single cells using a microfluidic system with real-time image processing

被引:0
|
作者
Cai, Yike [1 ]
Chen, Siyuan [1 ]
Xu, Dong [1 ]
Guo, Tianruo [2 ]
Jin, Jing [1 ]
Chen, Huaying [1 ]
机构
[1] Harbin Inst Technol, Sch Mech Engn & Automat, Shenzhen, Peoples R China
[2] UNSW, Grad Sch Biomed Engn, Sydney, NSW, Australia
基金
中国国家自然科学基金;
关键词
DEFORMABILITY;
D O I
10.1109/EMBC40787.2023.10340799
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
The mechanical properties of cells are closely related to their physiological states and functions. Due to the limitations of conventional cell elasticity measurement technologies such as low throughput, cell-invasiveness, and high cost, microfluidic systems are emerging as powerful tools for high-throughput cell mechanical property studies. This paper introduces a microfluidic system to automatically measure the elastic modulus of single cells in real time. The system integrated a microfluidic chip with a microchannel for cell constriction, a pressure pump, a precision differential pressure sensor, and a program for online analysis of cell deformation. The program used a fast U-net to segment cell images and measure protrusion length during cell deformation. Subsequently, the cell elasticity was determined in real-time based on the deformation and required pressure using the power law rheological model. Finally, Young's modulus of BMSCs, Huh-7 cells, EMSCs, and K562 cells was measured as 25.13 +/- 15.19 Pa, 69.74 +/- 92.01 Pa, 54.50 +/- 59.31 Pa and 58.43 +/- 27.27 Pa, respectively. The microfluidic system has significant application potential in the automated evaluation of cell mechanical properties.
引用
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页数:4
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