Biomicrofluidics. 2009 Oct 21;3(4):44104. doi: 10.1063/1.3251125.
This paper presents a field-flow method for separating particle populations in a dielectrophoretic (DEP) chip with asymmetric electrodes under continuous flow. The structure of the DEP device (with one thick electrode that defines the walls of the microfluidic channel and one thin electrode), as well as the fabrication and characterization of the device, was previously described. A characteristic of this structure is that it generates an increased gradient of electric field in the vertical plane that can levitate the particles experiencing negative DEP. The separation method consists of trapping one population to the bottom of the microfluidic channel using positive DEP, while the other population that exhibits negative DEP is levitated and flowed out. Viable and nonviable yeast cells were used for testing of the separation method.
本文提出了一种在场流分离方法,用于在具有不对称电极的介电泳(DEP)芯片中在连续流动下分离颗粒群体。DEP 器件的结构(具有一个定义微流道壁的厚电极和一个薄电极)以及器件的制造和特性已在前文中描述过。该结构的一个特点是,它在垂直平面上产生了增强的电场梯度,这可以使经历负 DEP 的颗粒悬浮。分离方法包括使用正 DEP 将一个颗粒群体捕获到微流道的底部,而表现出负 DEP 的另一个群体则被悬浮并流出。活酵母细胞和非活酵母细胞都被用于测试该分离方法。