Recognition of Single Fluorescence Events by Temporal Pixel Intensity Fluctuation

Kai Gu,  and , Chunming Liu*, 
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引用次数: 0

Abstract

Single-molecule localization microscopy circumvents the diffraction limit of traditional fluorescence microscopy by detecting the photoemission signals of individual fluorescent molecules. The accurate recognitions of fluorescence molecules/events are critical to single-molecule/super-resolution imaging experiments, which determine the precision of molecular localizations and the quality of the image reconstruction. Herein, we presented a single-molecule detection method which relied on the temporal pixel intensity fluctuation. The method was capable of quickly determining the approximate localizations of fluorescence events with high sensitivity. We evaluated the performance of the method under a series of signal-to-noise ratios (SNR) and discussed the criterion of setting the temporal fluctuation threshold to achieve the optimized spots recognition results.

Abstract Image

基于时间像素强度波动的单个荧光事件识别
单分子定位显微镜通过检测单个荧光分子的光发射信号,绕过了传统荧光显微镜的衍射极限。荧光分子/事件的准确识别对于单分子/超分辨率成像实验至关重要,这决定了分子定位的精度和图像重建的质量。在此,我们提出了一种基于时间像素强度波动的单分子检测方法。该方法能够以高灵敏度快速确定荧光事件的近似定位。我们评估了该方法在一系列信噪比(SNR)下的性能,并讨论了设置时间波动阈值以获得优化斑点识别结果的标准。
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来源期刊
Chemical & Biomedical Imaging
Chemical & Biomedical Imaging 化学与生物成像-
CiteScore
1.00
自引率
0.00%
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0
期刊介绍: Chemical & Biomedical Imaging is a peer-reviewed open access journal devoted to the publication of cutting-edge research papers on all aspects of chemical and biomedical imaging. This interdisciplinary field sits at the intersection of chemistry physics biology materials engineering and medicine. The journal aims to bring together researchers from across these disciplines to address cutting-edge challenges of fundamental research and applications.Topics of particular interest include but are not limited to:Imaging of processes and reactionsImaging of nanoscale microscale and mesoscale materialsImaging of biological interactions and interfacesSingle-molecule and cellular imagingWhole-organ and whole-body imagingMolecular imaging probes and contrast agentsBioluminescence chemiluminescence and electrochemiluminescence imagingNanophotonics and imagingChemical tools for new imaging modalitiesChemical and imaging techniques in diagnosis and therapyImaging-guided drug deliveryAI and machine learning assisted imaging
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