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Correcting Artifacts in Single Molecule Localization Microscopy Analysis Arising from Pixel Quantum Efficiency Differences in sCMOS Cameras

机译:SCMOS相机中的像素量子效率差异产生的单分子定位显微镜分析中的单分子定位显微镜分析

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Optimal analysis of single molecule localization microscopy (SMLM) data acquired with a scientific Complementary Metal-Oxide-Semiconductor (sCMOS) camera relies on statistical compensation for its pixel-dependent gain, offset and readout noise. In this work we show that it is also necessary to compensate for differences in the relative quantum efficiency (RQE) of each pixel. We found differences in RQE on the order of 4% in our tested sCMOS sensors. These differences were large enough to have a noticeable effect on analysis algorithm results, as seen both in simulations and biological imaging data. We discuss how the RQE differences manifest themselves in the analysis results and present the modifications to the Poisson maximum likelihood estimation (MLE) sCMOS analysis algorithm that are needed to correct for the RQE differences.
机译:用科学互补金属氧化物 - 半导体(SCMOS)相机获得的单分子定位显微镜(SMLM)数据的最佳分析依赖于其像素依赖性增益,偏移和读出噪声的统计补偿。在这项工作中,我们表明还需要补偿每个像素的相对量子效率(RQE)的差异。我们在经过测试的SCMOS传感器中发现了RQE的差异为4%。这些差异足以对分析算法结果具有显着影响,如模拟和生物成像数据所见。我们讨论RQE差异如何在分析结果中表现出来,并呈现对RQE差异所需的泊松最大似然估计(MLE)SCMOS分析算法的修改。

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