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基于 Arduino 的气动控制微流控装置的微尺度流量控制和液滴生成。

Microscale Flow Control and Droplet Generation Using Arduino-Based Pneumatically-Controlled Microfluidic Device.

机构信息

Department of Mechanical System Engineering, Kumoh National Institute of Technology, Gumi 39177, Republic of Korea.

Department of Aeronautics, Mechanical and Electronic Convergence Engineering, Kumoh National Institute of Technology, Gumi 39177, Republic of Korea.

出版信息

Biosensors (Basel). 2024 Sep 30;14(10):469. doi: 10.3390/bios14100469.

Abstract

Microfluidics are crucial for managing small-volume analytical solutions for various applications, such as disease diagnostics, drug efficacy testing, chemical analysis, and water quality monitoring. The precise control of flow control devices can generate diverse flow patterns using pneumatic control with solenoid valves and a microcontroller. This system enables the active modulation of the pneumatic pressure through Arduino programming of the solenoid valves connected to the pressure source. Additionally, the incorporation of solenoid valve sets allows for multichannel control, enabling simultaneous creation and manipulation of various microflows at a low cost. The proposed microfluidic flow controller facilitates accurate flow regulation, especially through periodic flow modulation beneficial for droplet generation and continuous production of microdroplets of different sizes. Overall, we expect the proposed microfluidic flow controller to drive innovative advancements in technology and medicine owing to its engineering precision and versatility.

摘要

微流控技术对于管理各种应用的小体积分析解决方案至关重要,例如疾病诊断、药物功效测试、化学分析和水质监测。通过使用电磁阀和微控制器进行气动控制,可以精确控制流量控制装置,从而产生各种流动模式。该系统通过对连接到压力源的电磁阀进行 Arduino 编程,实现对气动压力的主动调节。此外,电磁阀组的集成允许进行多通道控制,从而可以低成本地同时创建和操作各种微流。所提出的微流控流量控制器实现了精确的流量调节,特别是通过周期性的流量调制有利于液滴的生成和不同大小的微滴的连续产生。总的来说,我们预计由于其工程精度和多功能性,所提出的微流控流量控制器将推动技术和医学的创新发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07b4/11506217/c2742b37572d/biosensors-14-00469-g001.jpg

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