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A 2D model of traveling wave Dielectrophoresis microelectrode array based on printed circuit board technology for manipulation and characterization of malignant and normal liver cells

机译:基于印刷电路板技术的行波介电电泳微电极阵列的二维模型,用于处理和表征恶性和正常肝细胞

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the Dielectrophoresis (DEP) is a phenomenon in which a force exists on a particle due to a non-uniform electric field. A widely used technique for particle manipulation and separation is a traveling wave dielectrophoresis (twDEP), where it is particularly applied to biological particles. In this work, a 2D model of traveling wave microelectrode array of printed circuit board (PCB) based technology is presented and discussed. The twDEP is an electro-kinetic technique resulting from the interaction of a non-uniform electric field and polarizable particles. The electric field and the interaction of a nonuniform electric field and polarizable particles were simulated using COMSOL Multiphysics®. The proposed twDEP is used to manipulate liver cells and distinguish between malignant and normal liver cells. In the scope of paper, a concentric ring microelectrodes based on PCB technology are designed for manipulating liver cells, as well distinguishing between malignant and normal liver cells using COMSOL Multiphysics®.
机译:介电泳(DEP)是由于电场不均匀而在粒子上存在力的现象。一种广泛用于粒子处理和分离的技术是行波介电电泳(twDEP),在该技术中特别适用于生物粒子。在这项工作中,提出并讨论了基于印刷电路板(PCB)技术的行波微电极阵列的二维模型。 twDEP是一种电动技术,它是由非均匀电场和可极化粒子的相互作用产生的。使用COMSOLMultiphysics®模拟电场以及非均匀电场与可极化粒子的相互作用。拟议的twDEP用于操纵肝细胞并区分恶性和正常肝细胞。在论文范围内,基于PCB技术的同心环微电极设计用于处理肝细胞,并使用COMSOLMultiphysics®区分恶性和正常肝细胞。

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