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Numerical simulation of electrode geometry and its arrangement of dielectrophoretic filter for separation of cells

机译:用于分离细胞的介电泳滤波器的电极几何形状及其布置的数值模拟

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摘要

Recently, studies of selective separation of cells using dielectrophoresis (DEP) have been performed. However, these are not applied to a large scale separation because the separation speed was low. For the problem of the DEP separation, a DEP force is effectively acted only when it is close to the electrode. However, a DEP filter would be one of the answers for a large scale separation. In this paper, we discussed optimization of electrode geometries and arrangement of the DEP filter by using the finite element method (FEM) analysis in order to improve the separation efficiency. A DEP filter electrode using fine wire has a circular cross section, and in this case it became clear that the value of partial derivativeE(2)/partial derivativey was influenced by the diameter, and the optimum diameter was 0.6 times the electrode gap. Also we discussed for various electrode geometries such as circular, square, diamond, and equilateral triangle electrodes. It became clear that the optimal cross sectional geometry of the DEP filter electrode was square.
机译:最近,已经进行了使用介电电泳(DEP)选择性分离细胞的研究。但是,由于分离速度低,因此不适用于大规模分离。对于DEP分离的问题,仅当DEP力靠近电极时才有效地起作用。但是,DEP过滤器将是大规模分离的答案之一。在本文中,我们讨论了通过有限元方法(FEM)分析优化电极几何形状和DEP过滤器的布置,以提高分离效率。使用细线的DEP过滤电极的横截面为圆形,在这种情况下,很明显偏导数E(2)/偏导数的值受直径的影响,最佳直径为电极间隙的0.6倍。我们还讨论了各种电极几何形状,例如圆形,正方形,菱形和等边三角形电极。显然,DEP过滤电极的最佳横截面几何形状为正方形。

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