Broadband single-cell detection with a coplanar series gap

X. Ma, X. Du, C. Multari, Y. Ning, C. Palego, X. Luo, V. Gholizadeh, X. Cheng, J. Hwang
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引用次数: 13

Abstract

Using a coplanar waveguide with a series gap in conjunction with dielectrophoresis trapping, consecutive S-parameter measurements between 0.5 and 20 GHz were quickly performed with and without a Jurkat cell trapped to compensate for a relatively noisy and drifting background. This allowed the small cytoplasm capacitance, on the order of 10 fF, to be reliably extracted. The extracted cytoplasm capacitance is within a factor of 2 of the previously reported value by using a shunt trap but is believed to be more accurate. The present technique can complement previously developed microwave and RF techniques in characterizing the capacitances and resistances of plasma and membrane for complete characterization of the electrical properties of a simple cell.
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带共面串联间隙的宽带单细胞检测
使用带有串联间隙的共面波导与介电电泳捕获相结合,在有Jurkat电池捕获和没有Jurkat电池捕获的情况下,快速完成了0.5至20 GHz之间的连续s参数测量,以补偿相对嘈杂和漂移的背景。这样可以可靠地提取10 fF量级的小细胞质电容。通过使用分流陷阱,提取的细胞质电容在先前报道值的2倍之内,但被认为更准确。目前的技术可以补充先前开发的微波和射频技术,用于表征等离子体和膜的电容和电阻,以完整表征简单细胞的电学特性。
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Broadband single-cell detection with a coplanar series gap Uncertainty analysis in coplanar waveguide with unscented transformation Measurement methods for the permittivity of thin sheet dielectric materials Continuing challenge of improving measurement accuracy in terahertz vector network analyzers (INVITED) — The Taming of "Terahertz vector network analyzers" Calibration/verification standards for measurement of extremely high impedances
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