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Numerical design of a 3D microfluidic systems for bioparticle analysis: Electrostatic and dielectrophoretic simulations

机译:用于生物粒子分析的3D微流体系统的数值设计:静电和介电泳模拟

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Development of in vitro techniques for medical and industrial applications has introduced over the past few years modern devices for detecting and manipulation of biological probes. A major interest is granted for unicellular analysis in order to produce new techniques for cell membrane permeabilization. Microfluidics became an indispensable tool used in cell research and analysis. In this paper, we present a new device for cell manipulation, electroporation and observation. Dielectrophoresis (DEP) is used to transport the cells by dielectroforetic forces (FDEP). The influence of electric field and flow behavior is studied. The simulation results show the influence of flow and dielectrophoretic force on cells migration inside the microfluidics channel.
机译:在过去的几年中,用于医学和工业应用的体外技术的发展引入了用于检测和操纵生物探针的现代设备。为了产生用于细胞膜透化的新技术,单细胞分析得到了极大的关注。微流体成为细胞研究和分析中必不可少的工具。在本文中,我们提出了一种用于细胞操纵,电穿孔和观察的新装置。介电电泳(DEP)用于通过介电力(FDEP)转运细胞。研究了电场和流动行为的影响。仿真结果表明流动和介电泳力对细胞在微流控通道内迁移的影响。

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