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Calibrated complex impedance of CHO cells and E. coli bacteria at GHz frequencies using scanning microwave microscopy

机译:使用扫描微波显微镜在GHz频率下校准CHO细胞和大肠杆菌的复阻抗

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摘要

The application of scanning microwave microscopy (SMM) to extract calibrated electrical properties of cells and bacteria in air is presented. From the S-11 images, after calibration, complex impedance and admittance images of Chinese hamster ovary cells and E. coli bacteria deposited on a silicon substrate have been obtained. The broadband capabilities of SMM have been used to characterize the bio-samples between 2 GHz and 20 GHz. The resulting calibrated cell and bacteria admittance at 19 GHz were Y-cell = 185 mu S. + j285 mu S and Y-bacteria = 3 mu S + j20 mu S, respectively. A combined circuitry-3D finite element method EMPro model has been developed and used to investigate the frequency response of the complex impedance and admittance of the SMM setup. Based on a proposed parallel resistance-apacitance model, the equivalent conductance and parallel capacitance of the cells and bacteria were obtained from the SMM images. The influence of humidity and frequency on the cell conductance was experimentally studied. To compare the cell conductance with bulk water properties, we measured the imaginary part of the bulk water loss with a dielectric probe kit in the same frequency range resulting in a high level of agreement.
机译:介绍了应用扫描微波显微镜(SMM)提取空气中细胞和细菌的校准电性能。从S-11图像中,经过校准后,获得了沉积在硅基质上的中国仓鼠卵巢细胞和大肠杆菌的复数阻抗和导纳图像。 SMM的宽带功能已用于表征2 GHz至20 GHz之间的生物样本。在19 GHz时,校准后的细胞和细菌的导纳率分别为Y细胞= 185μS。+ j285μS和Y细菌= 3μS+ j20μS。已经开发了组合电路3D有限元方法EMPro模型,并用于研究复阻抗的频率响应和SMM设置的导纳。基于提出的并联电阻电容模型,从SMM图像中获得了细胞和细菌的等效电导和并联电容。实验研究了湿度和频率对细胞电导的影响。为了比较电池电导率与大量水分的性质,我们使用介电探针套件在相同的频率范围内测量了大量水分损失的虚部,从而获得了很高的一致性。

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