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Measurement of the Imaginary Part of the Clausius-Mossotti Factor of Particle/Cell via Dual Frequency Electrorotation

机译:通过双频电旋转测量粒子/细胞的克劳修斯-莫索蒂因子的虚部

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摘要

A simple and inexpensive method using planar electrodes was proposed for the measurement of the imaginary part of the Clausius-Mossotti factor, , of particle/cell for electrorotation (ER) and travelling wave dielectrophoresis (twDEP). It is based on the balance between the dielectrophoretic and viscous torques on a particle undergoing ER subject to dual frequency operation in an ER chamber. A four-phase ac voltage signal with a given frequency is applied for generating ER for measurement, and another two-phase signal is applied at a selected frequency for generating a negative dielectrophoretic force for confining the particle motion, instead of using laser tweezer or three-dimensional electrodes in the literature. Both frequencies can be applied to the same electrodes in a four-electrode ER system and to alternative different electrodes in an eight-electrode ER system, and both systems are capable for providing accurate measurement. The measurements were validated by comparing with the theoretical result using sephadex particles in KCl solution, and with the existing experimental results for various human cancer cells in medium with conductivity from 0.01–1.2 S/m, using ER with optical tweezer and dual frequency twDEP. Contrast between the ER and the twDEP methods (the current two available methods) was discussed and commented. The present method could provide measurement for wider frequency range and more accurate result near = 0, in comparison with the results using the twDEP method. However, the twDEP method could perform much more rapid measurement. Detailed forces and torque were calculated inside the ER chamber for understanding the physics and assessing the characteristics of the dual frequency ER method. This study is of academic interest as the torque in ER and the force in twDEP can be calculated only when is known. It also finds biomedical applications as the -spectra can be served as physical phenotypes for different cells, and can be applied for deriving dielectric properties of cells.
机译:提出了一种使用平面电极的简单而廉价的方法,用于测量克劳修斯-莫索蒂因子的虚部,用于电旋转(ER)和行波介电电泳(twDEP)的粒子/细胞。它基于在ER腔中经过双频操作的经历ER的粒子的介电泳和粘滞转矩之间的平衡。施加给定频率的四相交流电压信号以生成用于测量的ER,以选定的频率施加另一个两相信号以生成负的介电泳力以限制粒子运动,而不是使用激光镊子或三个文献中的三维电极。两种频率都可以应用于四电极ER系统中的相同电极,也可以应用于八电极ER系统中的替代性不同电极,并且两种系统都能够提供准确的测量结果。通过使用Sephadex颗粒在KCl溶液中的理论结果以及在电导率为0.01–1.2 S / m的介质中使用带有光学镊子和双频twDEP的各种人类癌细胞的现有实验结果,对测量结果进行了验证。讨论了ER和twDEP方法(当前两种可用方法)之间的对比。与使用twDEP方法的结果相比,本方法可以为更宽的频率范围和接近= 0的结果提供更准确的测量结果。但是,twDEP方法可以执行更快的测量。为了了解物理原理并评估双频ER方法的特性,在ER腔内计算了详细的力和扭矩。这项研究具有学术意义,因为只有在已知时才能计算出ER中的扭矩和twDEP中的力。它也发现了生物医学应用,因为-光谱可以用作不同细胞的物理表型,并且可以用于推导细胞的介电特性。

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