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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Combined detection of AC‐electrokinetic effects: Experiments with three‐axial chicken red blood cells
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Combined detection of AC‐electrokinetic effects: Experiments with three‐axial chicken red blood cells

机译:交流电动效应的组合检测:三轴鸡红细胞的实验

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Abstract Dielectrophoresis (DEP), electrorotation (ROT), and electro‐orientation were used for the dielectric spectroscopy of nucleated three‐axial chicken red blood cells (CRBCs). Because the different AC‐electrokinetic effects are not mutually independent, their DEP and ROT spectra were combined in ranges separated by the reorientation of the CRBCs in the inhomogeneous linear DEP and circular ROT fields. This behavior can be qualitatively described by a single‐shell ellipsoidal model. Whereas in linear fields, the maximum of the Clausius–Mossotti factor along the three axes determines the orientated axis, in circular fields, the minimum of the factor determines the axis perpendicularly orientated to the field plane. Quantitatively, it has not been possible to find a consistent parameter set for fitting the DEP and ROT spectra, as well as the reorientation frequencies. Our ellipsoidal CRBC standard model had semiaxes of a ?=?7.7?μm, b ?=?4.0?μm, and c ?=?1.85?μm, a relative permittivity of 35 to 45 and conductivity of 0.36 to 0.04?S/m for the cytoplasm, combined with a specific capacitance of 10 to 14?mF/m 2 and a conductivity of 3500?S/m 2 for the cell membrane. The fits in different external conductivity ranges between external conductivities of 0.015 and 1.0?S/m were improved when the membrane capacitance was changed between 4 to 25?mF/m 2 depending on the method used. A similar transition was reflected in the effective properties of a three‐shell spherical model containing an internal membranous sphere with the geometry of the CRBC nucleus. Our findings suggest that the simultaneous interpretation of various AC‐electrokinetic spectra is a step toward the dielectric fingerprinting of biological cells.
机译:摘要介电泳(DEP),电动电泳(腐烂)和电取用于核心三轴鸡红细胞(CRBC)的介电光谱法。因为不同的交流电动效应不是相互独立的,所以它们的DEP和ROT光谱在通过在非均匀线性DEP和圆形腐磁场中的CRBC的重新定向分开的范围内组合。该行为可以通过单壳椭圆形模型定性地描述。虽然在线性场中,沿着三个轴的Clausius-Mossotti系数的最大值决定了圆形场中的定向轴,该因子的最小值确定垂直定向到场平面的轴。定量地,还没有找到用于拟合DEP和ROT光谱的一致参数,以及重新定向频率。我们的椭圆体CRBC标准模型具有α=α= 7.7?μm,b?=4.0≤μm,c?=Δ1.85≤μm,相对介电常数为35至45,电导率为0.36至0.04?s / m对于细胞质,与10至14℃的特定电容合并为细胞膜的3500·s / m 2的电导率。当膜电容在4至25μmf/ m 2之间改变为4至25μm/ m 2时,在0.015和1.0≤S/ m之间的外部电导率之间的拟合。在含有CRBC核的几何形状的三壳球形模型的有效性质中反映了类似的转变。我们的研究结果表明,各种交流电动光谱的同时解释是朝向生物细胞的介质指纹识别的步骤。

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