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Co-ordinated detection of microparticles using tunable resistive pulse sensing and fluorescence spectroscopy

机译:使用可调电阻脉冲感应和荧光光谱法对微粒进行协调检测

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摘要

Tunable resistive pulse sensing (TRPS) has emerged as a useful tool for particle-by-particle detection and analysis of microparticles and nanoparticles as they pass through a pore in a thin stretchable membrane. We have adapted a TRPS device in order to conduct simultaneous optical measurements of particles passing through the pore. High-resolution fluorescence emission spectra have been recorded for individual 1.9 μm diameter particles at a sampling period of 4.3 ms. These spectra are time-correlated with RPS pulses in a current trace sampled every 20 μs. The flow rate through the pore, controlled by altering the hydrostatic pressure, determines the rate of particle detection. At pressures below 1 kPa, more than 90% of fluorescence and RPS events were matching. At higher pressures, some peaks were missed by the fluorescence technique due to the difference in sampling rates. This technique enhances the particle-by-particle specificity of conventional RPS measurements and could be useful for a range of particle characterization and bioanalysis applications.
机译:可调电阻脉冲感测(TRPS)已成为一种有用的工具,当微粒和纳米颗粒通过可拉伸薄膜中的孔时,可以逐个颗粒地进行检测和分析。我们已经对TRPS装置进行了调整,以便对穿过孔的粒子进行同时光学测量。记录了直径为1.9μm的单个粒子的高分辨率荧光发射光谱,采样周期为4.3μms。这些光谱与RPS脉冲在时间上相关,该电流在每20μs采样的电流轨迹中。通过改变静水压力控制的通过孔的流速决定了颗粒检测的速率。在低于1kkPa的压力下,超过90%的荧光和RPS事件是匹配的。在更高的压力下,由于采样率的差异,荧光技术会漏掉一些峰。该技术增强了常规RPS测量的逐颗粒特异性,可用于一系列颗粒表征和生物分析应用。

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