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Spatial concentration distribution analysis of cells in electrode-multilayered microchannel by dielectric property measurement

机译:介电性能测量电极多层微通道中细胞的空间浓度分布分析

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摘要

The spatial concentration distribution of cells in a microchannel is measured by combining the dielectric properties of cells with the specific structure of the electrode-multilayered microchannel. The dielectric properties of cells obtained with the impedance spectroscopy method includes the cell permittivity and dielectric relaxation, which corresponds to the cell concentration and structure. The electrode-multilayered microchannel is constructed by 5 cross-sections, and each cross-section contains 5 electrode-layers embedded with 16 micro electrodes. In the experiment, the dielectric properties of cell suspensions with different volume concentrations are measured with different electrode-combinations corresponding to different electric field distributions. The dielectric relaxations of different cell concentrations are compared and discussed with the Maxwell-Wagner dispersion theory, and the relaxation frequencies are analysed by a cell polarization model established based on the Hanai cell model. Moreover, a significant linear relationship with AC frequency dependency between relative permittivity and cell concentration was found, which provides a promising way to on-line estimate cell concentration in microchannel. Finally, cell distribution in 1 cross-section of the microchannel (X and Y directions) was measured with different electrode-combinations using the dielectric properties of cell suspensions, and cell concentration distribution along the microchannel (Z direction) was visualized at flowing state. The present cell spatial sensing study provides a new approach for 3 dimensional non-invasive online cell sensing for biological industry.
机译:通过将细胞的介电特性与电极多层微通道的特定结构相结合,可以测量微通道中细胞的空间浓度分布。用阻抗谱法获得的细胞介电性能包括细胞介电常数和介电弛豫,这与细胞浓度和结构相对应。电极多层微通道由5个横截面构成,每个横截面包含5个埋有16个微电极的电极层。在该实验中,使用与不同电场分布相对应的不同电极组合来测量具有不同体积浓度的细胞悬液的介电性能。用麦克斯韦-瓦格纳色散理论比较和讨论了不同细胞浓度下的介电弛豫,并通过基于Hanai细胞模型建立的细胞极化模型分析了弛豫频率。此外,发现相对介电常数与细胞浓度之间存在着与交流频率相关的显着线性关系,这为在线估算微通道中的细胞浓度提供了一种有希望的方法。最后,利用细胞悬液的介电特性,用不同的电极组合测量微通道1个截面(X和Y方向)中的细胞分布,并在流动状态下观察沿微通道(Z方向)的细胞浓度分布。当前的细胞空间传感研究为生物工业的3维非侵入性在线细胞传感提供了一种新方法。

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