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反馈控制微泡发生器,每秒产生一百万单分散气泡。

Feedback-controlled microbubble generator producing one million monodisperse bubbles per second.

机构信息

Physics of Fluids Group, Technical Medical (TechMed) Center and MESA+ Institute for Nanotechnology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.

出版信息

Rev Sci Instrum. 2021 Mar 1;92(3):035110. doi: 10.1063/5.0032140.

Abstract

Monodisperse lipid-coated microbubbles are a promising route to unlock the full potential of ultrasound contrast agents for medical diagnosis and therapy. Here, we present a stand-alone lab-on-a-chip instrument that allows microbubbles to be formed with high monodispersity at high production rates. Key to maintaining a long-term stable, controlled, and safe operation of the microfluidic device with full control over the output size distribution is an optical transmission-based measurement technique that provides real-time information on the production rate and bubble size. We feed the data into a feedback loop and demonstrate that this system can control the on-chip bubble radius (2.5 μm-20 μm) and the production rate up to 10 bubbles/s. The freshly formed phospholipid-coated bubbles stabilize after their formation to a size approximately two times smaller than their initial on-chip bubble size without loss of monodispersity. The feedback control technique allows for full control over the size distribution of the agent and can aid the development of microfluidic platforms operated by non-specialist end users.

摘要

单分散脂质包覆微泡是一种有前途的途径,可以充分发挥超声造影剂在医学诊断和治疗中的潜力。在这里,我们提出了一种独立的芯片实验室仪器,可以以高产量实现高单分散性的微泡形成。关键是要保持微流控装置的长期稳定、可控和安全运行,并完全控制输出尺寸分布,这需要一种基于光传输的测量技术,提供有关生产速率和气泡尺寸的实时信息。我们将数据输入到反馈回路中,并证明该系统可以控制芯片上的气泡半径(2.5μm-20μm)和生产速率高达 10 个/秒。新形成的磷脂包覆的气泡在形成后稳定下来,其尺寸大约是初始芯片上气泡尺寸的两倍,而不会失去单分散性。反馈控制技术可以完全控制试剂的尺寸分布,并有助于开发由非专业最终用户操作的微流控平台。

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