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Quantitative analysis of photoactivated localization microscopy (PALM) datasets using pair-correlation analysis

机译:使用对相关分析对光活化定位显微镜(PALM)数据集进行定量分析

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Pointillistic based super-resolution techniques, such as photoactivated localization microscopy (PALM), involve multiple cycles of sequential activation, imaging, and precise localization of single fluorescent molecules. A super-resolution image, having nanoscopic structural information, is then constructed by compiling all the image sequences. Because the final image resolution is determined by the localization precision of detected single molecules and their density, accurate image reconstruction requires imaging of biological structures labeled with fluorescent molecules at high density. In such image datasets, stochastic variations in photon emission and intervening dark states lead to uncertainties in identification of single molecules. This, in turn, prevents the proper utilization of the wealth of information on molecular distribution and quantity. A recent strategy for overcoming this problem is pair-correlation analysis applied to PALM. Using rigorous statistical algorithms to estimate the number of detected proteins, this approach allows the spatial organization of molecules to be quantitatively described.
机译:基于点画法的超分辨率技术(例如光激活定位显微镜(PALM))涉及多个周期的顺序激活,成像和单个荧光分子的精确定位。然后,通过汇编所有图像序列来构造具有纳米结构信息的超分辨率图像。由于最终的图像分辨率取决于检测到的单个分子的定位精度及其密度,因此准确的图像重建需要对以荧光分子标记的生物结构进行高密度成像。在这种图像数据集中,光子发射的随机变化和中间的暗态导致单分子鉴定的不确定性。反过来,这阻止了对分子分布和数量信息的适当利用。解决该问题的最新策略是应用于PALM的对相关分析。使用严格的统计算法来估计检测到的蛋白质的数量,这种方法可以定量描述分子的空间组织。

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