Reproducible broadband measurement for cytoplasm capacitance of a biological cell

X. Ma, X. Du, C. Multari, Y. Ning, X. Luo, V. Gholizadeh, C. Palego, X. Cheng, J. Hwang
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引用次数: 20

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. Based on sixteen measurements repeated on eight live cells and eight dead cells, differences in both return and insertion losses show two distinct distributions indicating either return loss or insertion loss alone can be used to distinguish a live cell from a dead one. Further, since the frequency dependence is generally linear or absent, discrete-frequency measurement (as opposed to sweep-frequency measurement) of return or insertion loss may suffice. If proven statistically by a much larger number of cells, this should greatly speed up the measurement to facilitate its eventual field use.
生物细胞细胞质电容的可重复宽带测量
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。基于对8个活细胞和8个死细胞重复进行的16次测量,返回损耗和插入损耗的差异显示出两种不同的分布,表明仅返回损耗或插入损耗可用于区分活细胞和死细胞。此外,由于频率相关性通常是线性的或不存在,因此对回波或插入损耗进行离散频率测量(与扫描频率测量相反)可能就足够了。如果通过大量的细胞进行统计证明,这将大大加快测量速度,以促进其最终的现场使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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