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Ultra-wideband Characterization, Electroporation, and Dielectrophoresis of a Live Biological Cell Using the Same Vector Network Analyzer

机译:使用同一矢量网络分析仪的活生物细胞的超宽带表征,电穿孔和介电泳

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For the first time, single-cell trapping, characterization, electroporation, and de-trapping were demonstrated by conveniently programming the frequency and power of the same ultra-wideband vector network analyzer (VNA). For example, trapping and de-trapping of a cell were accomplished by applying to a coplanar waveguide (CPW) a CW signal of 3 dBm and 5 MHz and 10 kHz, respectively, corresponding to attractive and repulsive dielectrophoresis. After a cell is trapped on the CPW, the VNA was switched to 9 dBm and 100 kHz for electroporation. Before and after electroporation, the cell was characterized from 9 kHz to 9 GHz by setting the VNA at −18 dBm to assess the effect of electroporation. This breakthrough can improve not only the accuracy, but also the throughput of single-cell wideband electrical characterization.
机译:第一次,通过方便地编程同一超宽带矢量网络分析仪(VNA)的频率和功率,展示了单细胞捕获,表征,电穿孔和去捕获。例如,通过向共面波导(CPW)分别施加3 dBm和5 MHz和10 kHz的CW信号来实现对单元的捕获和去捕获,这分别对应于吸引和排斥介电电泳。将细胞捕获在CPW上后,将VNA切换到9 dBm和100 kHz进行电穿孔。在电穿孔之前和之后,通过将VNA设置在-18 dBm来评估电穿孔的效果,从而在9 kHz至9 GHz范围内对细胞进行了表征。这一突破不仅可以提高准确性,而且可以提高单小区宽带电特性的吞吐量。

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