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Design and fabrication of coplanar waveguide probes for single-cell impedance measurement using radio frequency

机译:用于射频单细胞阻抗测量的共面波导探头的设计与制造

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摘要

When cell impedance measurements are conducted at low frequency, the current passes through the outside wall of the cell membrane. The capacitance effect of the double layer and the position of the cell change the impedance. Therefore the pathological change inside the cell cannot be investigated. To overcome the shortcomings of low-frequency measurements, this Letter proposes a method that uses a dielectrophoretic (DEP) trapping technique to position single cells and a coplanar waveguide electrode to measure the impedance of a single HeLa cell (human cervical epithelioid carcinoma) in the frequency range of 1 MHz??1 GHz. Two materials (a double-sided printed circuit board and glass) are used to fabricate the measurement microelectrodes. Trapping microelectrodes are deposited on the glass substrate near the measurement microelectrodes to trap single cells using the DEP force. The electrical characterisation of a single cell is demonstrated using a two-port vector network analyser. The electrical equivalent model used in this work is validated through measurements of cell impedance in phosphate buffer solution and through electrical simulations of a single HeLa cell.
机译:在低频下进行细胞阻抗测量时,电流会流过细胞膜的外壁。双层的电容效应和电池的位置会改变阻抗。因此不能研究细胞内部的病理变化。为了克服低频测量的缺点,该信函提出了一种方法,该方法使用介电泳(DEP)捕获技术定位单个细胞,并使用共面波导电极来测量单个HeLa细胞(人宫颈上皮样癌)的阻抗。频率范围为1 MHz-1 GHz。两种材料(双面印刷电路板和玻璃)用于制造测量微电极。捕获微电极沉积在测量微电极附近的玻璃基板上,以利用DEP力捕获单个细胞。使用两端口矢量网络分析仪演示了单个细胞的电特性。通过测量磷酸盐缓冲溶液中的细胞阻抗并通过单个HeLa电池的电仿真来验证用于此工作的等效电模型。

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  • 来源
    《Micro & Nano Letters, IET》 |2011年第7期|p.503-509|共7页
  • 作者单位

    Department of Electrical Engineering and Center for Micro/Nano Science and Technology, National Cheng Kung University, 1 University Road, Tainan 701, Taiwan;

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