@inproceedings{59e173b3e0c14ba3ac36a9d5c84f4eaf,
title = "A microfluidic needle for sampling and delivery of chemical signals by segmented flows",
abstract = "This novel microfluidic needle-like device consist of parallel hydrophobic channels and seven 2 µm hydrophilic capillaries at the tip. The Laplace pressure in these capillaries creates a 19 kPa barrier pressure that prevents oil from exiting the hydrophobic channels. We demonstrated the delivery and sampling of aqueous droplets through these capillaries. There is a linear relationship between the recorded fluorescence intensity of samples and the external sampled dye concentration (10 to 40 µg/mL). We measured a response time of approximately 5 s. It will be a useful tool for in vivo on-line detection of chemical signals that change at sub 10s time scales.",
keywords = "Delivery, Needle, Sampling, Segmented flow",
author = "Shilun Feng and Guozhen Liu and Lianmei Jiang and Yonggang Zhu and Goldys, \{Ewa M.\} and Inglis, \{David W.\}",
note = "Publisher Copyright: {\textcopyright} 17CBMS-0001.; 21st International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2017 ; Conference date: 22-10-2017 Through 26-10-2017",
year = "2020",
language = "英语",
series = "21st International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2017",
publisher = "Chemical and Biological Microsystems Society",
pages = "346--347",
booktitle = "21st International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2017",
}