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A 65-nm CMOS Fully Integrated Analysis Platform Using an On-Chip Vector Network Analyzer and a Transmission-Line-Based Detection Window for Analyzing Circulating Tumor Cell and Exosome

机译:使用片上矢量网络分析仪和基于传输线的检测窗口分析循环肿瘤细胞和外泌体的65纳米CMOS完全集成分析平台

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摘要

A fully integrated CMOS circuit based on a vector network analyzer and a transmission-line-based detection window for circulating tumor cell (CTC) and exosome analysis is presented for the first time. We have introduced a fully integrated architecture, which eliminates the undesired parasitic components and enables high-sensitivity, to analyze extremely low-concentration CTC in blood. The detection window was designed on the high-sensitive coplanar waveguide line. To validate the operation of the proposed system, a test chip was fabricated using 65-nm CMOS technology. Measurements were performed after adding a tiny lump of silicone or a droplet of water on its detection window. The measured results show vertical bar S_21 vertical bar degradation of -1.96 dB and -6.04 dB for the silicone and the droplet, respectively, at 1.4 GHz. In addition, in another measurement using magnetic beads, it is confirmed that the proposed circuit can analyze even low concentrations of 20 beads/mu L. As well as microbeads, measurement with CTCs was successfully demonstrated.
机译:首次提出了基于矢量网络分析仪和基于传输线的循环肿瘤细胞(CTC)和外泌体分析的基于检测线的全集成CMOS电路。我们已经引入了一种完全集成的体系结构,该体系结构消除了不需要的寄生成分并实现了高灵敏度,从而可以分析血液中极低浓度的四氯化碳。检测窗口设计在高灵敏度共面波导线上。为了验证所提出系统的运行,使用65纳米CMOS技术制造了测试芯片。在其检测窗口上加入一小块硅酮或一滴水滴后进行测量。测量结果显示,在1.4 GHz下,有机硅和液滴的垂直条S_21垂直条劣化分别为-1.96 dB和-6.04 dB。此外,在另一种使用磁珠的测量中,已证实所提出的电路甚至可以分析20珠/μL的低浓度。与微珠一样,使用CTC的测量也得到了成功证明。

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