Department of Electronic and Computer Engineering, Hong Kong University of Science and Technology, Hong Kong, China.
Opt Lett. 2011 Jun 15;36(12):2236-8. doi: 10.1364/OL.36.002236.
Droplet-based microfluidic systems enable miniaturization of chemical reactions in femtoliter to picoliter volume compartments. Quantifying mixing dynamics of the reagents in droplets is critical to determine the system performance. In this Letter, we developed a two-photon excitation fluorescence lifetime imaging technique to quantitatively image the mixing dynamics in microfluidic droplets. A cross/autocorrelation method was used to reconstruct a high-quality fluorescence lifetime image of the droplet. The fluorescence decay was analyzed for accurate determination of the mixing ratio at each pixel of the image.
基于液滴的微流控系统可实现纳升至皮升级微量反应容器的微型化。量化液滴中试剂的混合动力学对于确定系统性能至关重要。在本研究中,我们开发了一种双光子激发荧光寿命成像技术,以定量成像微流控液滴中的混合动力学。使用互相关方法对液滴的荧光寿命图像进行重建,以获得高质量的荧光寿命图像。对荧光衰减进行分析,以准确确定图像中每个像素的混合比。