Park GwangSik, Han Dongsik, Kim GwangSu, Shin Seungwoo, Kim Kyoohyun, Park Je-Kyun, Park YongKeun
Appl Opt. 2017 Aug 1;56(22):6341-6347. doi: 10.1364/AO.56.006341.
Microfluidic mixing plays a key role in various fields, including biomedicine and chemical engineering. To date, although various approaches for imaging microfluidic mixing have been proposed, they provide only quantitative imaging capability and require exogenous labeling agents. Quantitative phase imaging techniques, however, circumvent these problems and offer label-free quantitative information about concentration maps of microfluidic mixing. We present the quantitative phase imaging of microfluidic mixing in various types of polydimethylsiloxane microfluidic channels with different geometries; the feasibility of the present method was validated by comparing it with the results obtained by theoretical calculation based on Fick's law.
微流体混合在包括生物医学和化学工程在内的各个领域中都起着关键作用。迄今为止,尽管已经提出了各种用于微流体混合成像的方法,但它们仅提供定量成像能力,并且需要外源性标记剂。然而,定量相成像技术克服了这些问题,并提供了关于微流体混合浓度图的无标记定量信息。我们展示了在具有不同几何形状的各种聚二甲基硅氧烷微流体通道中微流体混合的定量相成像;通过将本方法与基于菲克定律的理论计算结果进行比较,验证了本方法的可行性。