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基于压电驱动的先进微流控液滴操控。

Advanced microfluidic droplet manipulation based on piezoelectric actuation.

机构信息

Biomedical Engineering, Technion, Haifa, Israel.

出版信息

Biomed Microdevices. 2010 Oct;12(5):907-14. doi: 10.1007/s10544-010-9445-y.

Abstract

As droplet-based microfluidic devices evolve, the demand for simple-to-fabricate droplet manipulation modules increases. Of these modules, droplet sorting has drawn much attention due to its ability not only to enrich, but also to selectively isolate droplet subpopulations of interest. In this paper, we present an innovative piezoelectric-driven droplet sorter that is simple to fabricate, reproducible and robust, which provides extensive control over spatio-temporal droplet pattern. This degree of control is demonstrated by sorting droplets of alternating volumes and by grouping defined number of droplets into traveling clusters. The ability to automatically sort droplets is demonstrated by computerized detection and sorting of droplets based on their color. The sorter performance was investigated and found to work on a wide range of sorting parameters. The sorter is created by a single step fabrication process and does not rely on complex electronics or optics. These advantages simplify the adoption of droplet-based microfluidic technology by the scientific community and provide an ideal platform for single cell assays.

摘要

随着基于液滴的微流控装置的发展,对易于制造的液滴操纵模块的需求不断增加。在这些模块中,液滴分选因其不仅能够富集,而且还能够选择性地分离感兴趣的液滴亚群而受到广泛关注。在本文中,我们提出了一种创新的压电驱动液滴分选器,该分选器易于制造、可重复且坚固,可对液滴的时空图案进行广泛控制。这种控制程度通过对交替体积的液滴进行分选以及将定义数量的液滴分组到行进的簇中得到了证明。通过基于颜色对液滴进行自动检测和分选,展示了自动分选液滴的能力。研究了分选器的性能,发现其在广泛的分选参数下都能正常工作。该分选器通过单一的制造工艺创建,不依赖于复杂的电子或光学器件。这些优势简化了科学界对基于液滴的微流控技术的采用,并为单细胞分析提供了理想的平台。

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