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首页> 外文期刊>Journal of optics >Bleed-through correction for rendering and correlation analysis in multi-colour localization microscopy
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Bleed-through correction for rendering and correlation analysis in multi-colour localization microscopy

机译:渗色校正,用于多色定位显微镜中的渲染和相关分析

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摘要

Multi-colour localization microscopy has enabled sub-diffraction studies of colocalization between multiple biological species and quantification of their correlation at length scales previously inaccessible with conventional fluorescence microscopy. However, bleed-through, or misidentification of probe species, creates false colocalization and artificially increases certain types of correlation between two imaged species, affecting the reliability of information provided by colocalization and quantified correlation. Despite the potential risk of these artefacts of bleed-through, neither the effect of bleed-through on correlation nor methods for its correction in correlation analyses have been systematically studied at typical rates of bleed-through reported to affect multi-colour imaging. Here, we present a reliable method of bleed-through correction applicable to image rendering and correlation analysis of multi-colour localization microscopy. Application of our bleed-through correction shows that our method accurately corrects the artificial increase in both types of correlation studied (Pearson coefficient and pair correlation), at all rates of bleed-through tested, in all types of correlation examined. In particular, anti-correlation could not be quantified without our bleed-through correction, even at rates of bleed-through as low as 2%. While it is demonstrated with dichroic-based multi-colour FPALM here, our presented method of bleed-through correction can be applied to all types of localization microscopy (PALM, STORM, dSTORM, GSDIM, etc), including both simultaneous and sequential multi-colour modalities, provided the rate of bleed-through can be reliably determined.
机译:多色定位显微镜已经实现了多种生物物种之间共定位的亚衍射研究,并实现了在以前的荧光显微镜无法达到的长度范围内对其相关性进行定量的定量分析。然而,渗漏或对探针种类的错误识别会造成虚假的共定位,并人为地增加了两个成像种类之间某些类型的相关性,从而影响了由共定位和定量相关性提供的信息的可靠性。尽管存在这些渗色伪影的潜在风险,但尚未以报道的影响典型彩色渗色速率的渗色率系统研究过渗色对相关性的影响或相关分析中的校正方法。在这里,我们提出了一种可靠的渗漏校正方法,适用于多色定位显微镜的图像渲染和相关分析。我们的渗漏校正的应用表明,在测试的所有渗漏率下,在所有相关类型中,我们的方法都能准确校正所研究的两种相关类型(皮尔森系数和对相关性)的人为增加。特别是,即使我们的渗漏率低至2%,也无法通过渗漏校正来量化抗相关性。虽然此处已通过基于二向色的多色FPALM进行了演示,但我们介绍的渗漏校正方法可应用于所有类型的定位显微镜(PALM,STORM,dSTORM,GSDIM等),包括同时和顺序多色颜色模式,前提是可以可靠地确定渗漏率。

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