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首页> 外文期刊>IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology >Sensitivity Analysis for Ultra-Wideband 2-Port Impedance Spectroscopy of a Live Cell
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Sensitivity Analysis for Ultra-Wideband 2-Port Impedance Spectroscopy of a Live Cell

机译:超宽带2端口阻抗光谱敏感性的灵敏度分析

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摘要

For ultra-wideband (9 kHz–9 GHz) 2-port impedance spectroscopy of a biological cell, sensitivity analysis was carried out for extracting lumped cell characteristics such as membrane resistance (as large as 1 MΩ) and cytoplasm capacitance (as small as 10 fF) from the scattering parameters. The scattering parameters were measured on a coplanar waveguide with a Jurkat cell trapped by dielectrophoresis either in a series or shunt configuration. The sensitivity analysis validated our previous empirical observation that the insertion loss of a series-trapped cell and the return loss of a shunt-trapped cell were most sensitive to the cell impedance. Additionally, the membrane resistance and cytoplasm capacitance were most sensitive to low- and high-frequency scattering parameters, respectively. In the future, the analysis can be used to optimize the test setup and protocol for fast, compact, and label-free characterization of a cell at the subcelluar level.
机译:对于生物细胞的超宽带(9kHz-9GHz)2端口阻抗光谱,进行敏感性分析,用于提取膜阻力(大约1MΩ)和细胞质电容(小于10 FF)来自散射参数。在共面波导上测量散射参数,其中在串联或分流配置中通过介电电泳被介电电泳被捕获的Jurkat细胞。灵敏度分析验证了我们之前的经验观察,即串捕获的细胞的插入损失和分流捕获的细胞的返回损失对细胞阻抗最敏感。另外,膜抗性和细胞质电容分别对低频和高频散射参数最敏感。将来,分析可用于优化测试设置和协议,以便快速,紧凑,以及在子单元水平处的单元格的无标记表征。

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