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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Effects of electrothermal vortices on insulator‐based dielectrophoresis for circulating tumor cell separation
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Effects of electrothermal vortices on insulator‐based dielectrophoresis for circulating tumor cell separation

机译:电热涡流对循环肿瘤细胞分离绝缘子介电泳的影响

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Abstract Insulator‐based dielectrophoresis (iDEP) is a powerful technique for separation and manipulation of bioparticles. In recent years, iDEP designs using arrays of insulating posts have shown promising results toward reaching high‐efficiency bioparticle manipulation. Joule heating (JH) and electrothermal (ET) flows have been observed in iDEP microdevices and significantly affecting their performances. In this research, we utilize mathematical modeling to study, iDEP technique and the effects of JH and ET flow on device performance and propose a separation scenario for selective trapping of circulating tumor cells (CTCs). A robust numerical model is developed to calculate the distribution of electric and fluid flow fields in the presence of JH and ET flow, and predict the cells’ trajectory inside the system. Our results indicate that JH not only induces temperature rise in the system, but also may alter the design iDEP separation scenario by inducing ET vortices that affect the cell's trajectory. To investigate the impact of JH‐induced ET flow characteristics and vortex generation on separation efficiency, we introduce a dimensionless force ratio encompassing the effects of electrical field, drag forces, JH, and ET flow. Interestingly, it was found that ET flows can be used to significantly enhance the separation efficiency, even in higher inlet flow rates. Lastly, the effect of post geometry has been discussed.
机译:摘要基于绝缘体的介电泳(IDEP)是一种用于分离和操纵生物颗粒的强大技术。近年来,使用绝缘柱阵列的IDEP设计表明了达到高效生物粒状操纵的有希望的结果。在IDEP Microdemices中观察到焦耳加热(JH)和电热(ET)流动,并显着影响其性能。在本研究中,我们利用数学建模来研究,IDEP技术和JH和ET流对装置性能的影响,并提出了一种用于循环肿瘤细胞(CTC)的选择性捕获的分离场景。开发了一种稳健的数值模型,以计算JH和ET流量的存在,并预测系统内部的电池轨迹。我们的结果表明,JH不仅诱导系统中的温度升高,而且可以通过诱导影响细胞轨迹的ET涡流来改变设计IDEP分离场景。为了研究JH诱导的ET流特性和涡流产生对分离效率的影响,引入了一种无量纲力比,包括电场,阻力,jh和eT流的影响。有趣的是,即使在更高的入口流速中,也发现ET流量可用于显着提高分离效率。最后,已经讨论了后几何形状的效果。

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