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Theoretical and experimental study of the kinetics of particle chains near electrodes in dielectrophoretic devices

机译:介电泳装置中电极附近粒子链动力学的理论和实验研究

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Using a three dimensional coupled Monte Carlo-Poisson algorithm and experimental results we studied the role of the particle-particle dipole interaction on the kinetics of a system of human cells suspended in a static liquid medium under the action of an oscillating non-uniform electric field generated by polynomial electrodes. We found that the kinetics of the cells during negative/repulsive dielectrophoresis depends on the local distribution of particles. If the cells have generated long chains during positive/attractive dielectrophoresis, such chains can hinder subsequent detachment resulting in a reduction of the separation/manipulation efficiency of dielectrophoretic device. This effect can be avoided by proper design of the electrodes schema.
机译:使用三维耦合蒙特卡洛-泊松算法和实验结果,我们研究了粒子-粒子偶极子相互作用对在振荡非均匀电场作用下悬浮在静态液体介质中的人类细胞系统动力学的作用由多项式电极生成。我们发现负/排斥介电泳过程中细胞的动力学取决于颗粒的局部分布。如果细胞在正/吸引介电泳过程中产生了长链,则这种链会阻碍随后的分离,从而导致介电泳装置的分离/操纵效率降低。可以通过正确设计电极方案来避免这种影响。

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