Biomicrofluidics. 2010 Jan 13;4(1):14102. doi: 10.1063/1.3294082.
An analysis has been made of the dielectrophoretic (DEP) forces acting on a spheroidal particle in a traveling alternating electric field. The traveling field can be generated by application of alternating current signals to an octapair electrode array arranged in phase quadrature sequence. The frequency dependent force can be resolved into two orthogonal forces that are determined by the real and the imaginary parts of the Clausius-Mossotti factor. The former is determined by the gradient in the electric field and directs the particle either toward or away from the tip of the electrodes in the electrode array. The force determined by the imaginary component is in a direction along the track of the octapair interdigitated electrode array. The DEP forces are related to the dielectric properties of the particle. Experiments were conducted to determine the DEP forces in such an electrode arrangement using yeast cells (Saccharomyces cervisiate TISTR 5088) with media of various conductivities. Experimental data are presented for both viable and nonviable cells. The dielectric properties so obtained were similar to those previously reported in literature using other DEP techniques.
对在行波交变电场中运动的球形粒子所受的介电泳(DEP)力进行了分析。行波可以通过在以相位正交序列排列的八对电极阵列上施加交流信号来产生。频率相关力可以分解为两个正交力,这两个力由克劳斯-莫索蒂因子的实部和虚部决定。前者由电场梯度决定,将粒子引导到电极阵列的电极尖端或远离电极尖端。由虚部决定的力沿八对叉指电极阵列的轨迹方向。DEP 力与粒子的介电特性有关。使用具有不同电导率的介质进行了实验,以确定这种电极布置中的 DEP 力,所用的粒子是酿酒酵母(Saccharomyces cervisiate TISTR 5088)。实验数据同时给出了活细胞和非活细胞的结果。所得到的介电特性与以前使用其他 DEP 技术在文献中报道的特性相似。