微流控
体积流量
炸薯条
微通道
材料科学
实验室晶片
微流控芯片
多物理
流量(数学)
纳米技术
机械
电气工程
工程类
物理
有限元法
结构工程
作者
Yecheng Zhang,Linkui Huang,Jianjiang Guo,Jiao Ji,Tianyu Wei,Lei Fu
出处
期刊:Langmuir
[American Chemical Society]
日期:2023-04-24
卷期号:39 (18): 6548-6555
被引量:3
标识
DOI:10.1021/acs.langmuir.3c00514
摘要
During the cell viability detection process inside a microfluidic chip, the more uniform the distribution of medium flow rates, the higher the accuracy of detection results. In order to achieve this goal, a multichannel microfluidic chip with uniform distribution of medium flow rates has been successfully designed. The multichannel microfluidic chip is designed with cell injection channels, vascular network-shaped medium injection channels, buffer zones, and a culture chamber. The medium flow rates inside culture chambers of the multichannel microfluidic chip and the common single-channel microfluidic chip are compared by COMSOL Multiphysics software and particle velocimetry experiment. The simulation and experimental results show that the medium flow rate distribution inside the culture chamber of the multichannel microfluidic chip is more uniform and changes more smoothly. When the medium perfusion flow rate is 0.5 μL/min, the maximum flow rate difference inside the culture chamber of the single-channel microfluidic chip is more than 13 times that of the multichannel microfluidic chip. Therefore, the multichannel microfluidic chip can ensure a uniform supply of medium inside the culture chamber, which is beneficial to improve the accuracy of cell viability detection.
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