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Silicon photomultipliers applied to the fluorescence detection of biomarkers

机译:硅光电倍增管用于生物标志物的荧光检测

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摘要

The silicon photomultiplier (SiPM) has advantages that allow it to detect low levels of light intensity in medical, chemical and biological applications; it can also build integrated, portable microfluidic systems. This paper presents a SIPM application designed for the detection of fluorescence of biomarkers. In order to minimise the volume of the tested sample, the measurements were conducted in a microfluidic system. A data acquisition system for the SiPM has been designed consisting of a dedicated application specific integrated circuit (ASIC) required to amplify and shape signals from the photodetector. The application has been designed with the aim of transforming it into a portable device. The detection method chosen in the research is based on flow cytometry and single molecule detection [1,2]. Although only a single photodetector was used, the presented applications can be adapted to multi-detector measurements. Initially, the application measured the fluorescence of fluorophores. Afterwards, it was used in the detection of Anti-NPR1 to confirm the effectiveness of the method. The application is not dedicated to a single antigen. It can be applied for the detection of a vast range of biomarkers.
机译:硅光电倍增管(SiPM)的优势使其可以在医学,化学和生物应用中检测低水平的光强度;它还可以构建集成的便携式微流体系统。本文介绍了旨在检测​​生物标志物荧光的SIPM应用程序。为了最小化被测样品的体积,在微流体系统中进行测量。已设计出用于SiPM的数据采集系统,该系统由专用的专用集成电路(ASIC)组成,该专用集成电路用于放大和整形光电探测器的信号。设计该应用程序的目的是将其转换为便携式设备。研究中选择的检测方法是基于流式细胞仪和单分子检测[1,2]。尽管仅使用了一个光电探测器,但所提供的应用程序可适用于多探测器测量。最初,该应用程序测量了荧光团的荧光。之后,将其用于检测Anti-NPR1,以确认该方法的有效性。该申请并非专用于单一抗原。它可以用于检测多种生物标志物。

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