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声流控 8:声泳在连续流微系统中的应用。

Acoustofluidics 8: applications of acoustophoresis in continuous flow microsystems.

机构信息

Dept. Measurement Technology and Industrial Electrical Engineering, Div. Nanobiotechnology Lund University, Sweden.

出版信息

Lab Chip. 2012 Apr 7;12(7):1210-23. doi: 10.1039/c2lc21256k. Epub 2012 Feb 24.

Abstract

This acoustofluidics tutorial focuses on continuous flow-based half wavelength resonator systems operated in the transversal mode, where the direction of the primary acoustic force acts in plane with the microchip. The transversal actuation mode facilitates integration with up- and downstream microchannel networks as well as visual control of the acoustic focusing experiment. Applications of particle enrichment in an acoustic half wavelength resonator are discussed as well as clarification of the carrier fluid from undesired particles. Binary separation of particle/vesicle/cell mixtures into two subpopulations is outlined based on the different polarities of the acoustic contrast factor. Furthermore, continuous flow separation of different particle/cell types is described where both Free Flow Acoustophoresis (FFA) and binary acoustophoresis are utilized. By capitalizing on the laminar flow regime, acoustophoresis has proven especially successful in performing bead/cell translations between different buffer systems. Likewise, the ability to controllably translate particulate matter across streamlines has opened a route to valving of cells/particles without any moving parts, where event triggered cell sorting is becoming an increasing area of activity. Recent developments now also enable measurements of fundamental cell properties such as density and compressibility by means of acoustophoresis. General aspects on working with live cells in acoustophoresis systems are discussed as well as available means to quantify the outcome of cell and particle separation experiments performed by acoustophoresis.

摘要

本声学流控教程专注于在横向模式下运行的连续流动半波长谐振器系统,其中主要声力的方向作用在与微芯片共面的平面内。横向激励模式便于与上下游微通道网络集成,以及对声聚焦实验进行可视化控制。讨论了在声学半波长谐振器中进行颗粒富集的应用,以及澄清载流液中不需要的颗粒。基于声对比度因子的不同极性,概述了将粒子/囊泡/细胞混合物的二元分离成两个亚群。此外,还描述了不同粒子/细胞类型的连续流分离,其中同时利用了自由流声悬浮(FFA)和二元声悬浮。通过利用层流状态,声悬浮在执行不同缓冲液系统之间的珠子/细胞平移方面取得了特别成功。同样,能够可控地将颗粒物质跨流线平移为细胞/颗粒的无活动部件阀,其中事件触发的细胞分选正成为日益活跃的领域。最近的发展现在还能够通过声悬浮测量基本细胞特性,如密度和可压缩性。还讨论了在声悬浮系统中使用活细胞的一般方面,以及可用于量化通过声悬浮进行的细胞和颗粒分离实验结果的方法。

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