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首页> 外文期刊>Lab on a chip >Whole column fluorescence imaging on a microchip by using a programmed organic light emitting diode array as a spatial-scanning light source and a single photomultiplier tube as detector
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Whole column fluorescence imaging on a microchip by using a programmed organic light emitting diode array as a spatial-scanning light source and a single photomultiplier tube as detector

机译:通过使用编程的有机发光二极管阵列作为空间扫描光源并使用单个光电倍增管作为检测器,在微芯片上进行全列荧光成像

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摘要

A novel miniaturized, integrated whole- column imaging detection (WCID) system on a microchip is presented. In this system, a program controlled organic light emitting diode (OLED) array was used as a spatial-scanning light source, to achieve imaging by the time sequence of the excited fluorescence. By this mechanism, a photomultiplier tube (PMT) instead of a charge coupled detector (CCD) can be applied to the imaging. Unlike conventional systems, no lenses, fibers or any mechanical components are required either. The novel flat light source provides uniform excitation light without size limitations and outputs a stronger power by pulse driving. The scanning mode greatly reduced the power consumption of the light source, which is valuable for a portable system. Meanwhile, this novel simplified system has a broader linear range, higher sensitivity and higher efficiency in data collection. Isoelectric focusing of R- phycoerythrin (PE) and monitoring of the overall process with WCID were performed on this system. The limit of detection (LOD) was 38 ng mL(-1) or 3.2 pg at 85 nL per column injection of PE. The system provides a technique for WCID capillary isoelectric focusing (cIEF) on chip and can be used for throughput analysis.
机译:提出了一种新型的微型化,集成的全柱成像检测(WCID)系统。在该系统中,将程控有机发光二极管(OLED)阵列用作空间扫描光源,以通过激发荧光的时间序列实现成像。通过这种机制,可以将光电倍增管(PMT)代替电荷耦合检测器(CCD)应用于成像。与传统系统不同,不需要透镜,纤维或任何机械组件。新颖的平面光源提供了不受大小限制的均匀激发光,并通过脉冲驱动输出了更强的功率。扫描模式大大降低了光源的功耗,这对于便携式系统而言非常有价值。同时,这种新颖的简化系统具有更宽的线性范围,更高的灵敏度和更高的数据收集效率。在该系统上进行了R-藻红蛋白(PE)的等电聚焦和WCID监测整个过程。每次PE进样时85 nL的检测限(LOD)为38 ng mL(-1)或3.2 pg。该系统提供了一种在芯片上进行WCID毛细管等电聚焦(cIEF)的技术,可用于吞吐量分析。

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