Opt Lett. 2021 Nov 1;46(21):5308-5311. doi: 10.1364/OL.440494.
We propose a new, to the best of our knowledge, technique to capture single particles in real-time in a microfluidic system with controlled flow using micro-pillar traps fabricated by one-step. The micro pillars are fabricated in parallel by femtosecond multi-foci laser beams, which are generated by multiplexing gratings. As the generation process does not need integration loops, the pattern and the intensity distribution of the foci array can be controlled in real-time by changing the parameters of gratings. The real-time control of the foci array enables rapidly fabricating microtraps in the microchannel with adjustment of the pillar spaces and patterns according to the sizes and shapes of target particles. This technology provides an important step towards using platforms based on single-particle analysis, and it paves the way for the development of innovative microfluidic devices for single-cell analysis.
我们提出了一种新的技术,据我们所知,该技术使用一步法制造的微柱阱在微流控系统中以受控的流率实时捕获单个颗粒。微柱是由飞秒多焦点激光束平行制造的,这些激光束是由复用光栅产生的。由于生成过程不需要积分环,因此通过改变光栅参数可以实时控制焦点阵列的图案和强度分布。焦点阵列的实时控制使得能够根据目标颗粒的大小和形状,通过调整柱间距和图案,在微通道中快速制造微阱。这项技术为基于单颗粒分析的平台的使用提供了重要的一步,并为单细胞分析的创新微流控设备的发展铺平了道路。