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Instantaneous and Quantitative Single Cells Viability Determination Using Dual Nanoprobe Inside ESEM

机译:使用ESEM内部的双重纳米探针进行瞬时和定量单细胞活力测定

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We performed single pulses current measurement on single cells using dual nanoprobe through environmental scanning electron microscope nanomanipulator system. The ability to characterize the electrical property of single cells can be used as a novel method for cell viability detection in quantitative and instantaneous manners. The nanoprobe was successfully fabricated using focused ion beam tungsten deposition and etching processes. The characteristics of the nanoprobe were examined from the energy dispersion spectrometry and noise analyses. In this paper, for the first time, the electrical property of single cells under their native condition was presented. In order to apply this method for cell viability detection, two types of cells were used, i.e., dead cells and live cells. The results showed that there is a significant difference on the electrical measurement data between dead and live cells.
机译:我们通过环境扫描电子显微镜纳米操纵器系统使用双纳米探针对单个细胞进行了单脉冲电流测量。表征单个细胞电特性的能力可以用作定量和瞬时方式检测细胞活力的新方法。使用聚焦离子束钨沉积和蚀刻工艺成功制造了纳米探针。通过能量色散谱和噪声分析检查了纳米探针的特性。本文首次提出了单细胞在自然条件下的电学性质。为了将该方法用于细胞活力检测,使用了两种细胞,即死细胞和活细胞。结果表明,死细胞和活细胞之间的电测量数据存在显着差异。

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