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首页> 外文期刊>Journal of Microscopy >Estimation of microscope drift using fluorescent nanodiamonds as fiducial markers
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Estimation of microscope drift using fluorescent nanodiamonds as fiducial markers

机译:使用荧光纳米金刚石作为基准标记的显微镜漂移的估计

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摘要

Fiducial markers are used to correct the microscope drift and should be photostable, be usable at multiple wavelengths and be compatible for multimodal imaging. Fiducial markers such as beads, gold nanoparticles, microfabricated patterns and organic fluorophores lack one or more of these criteria. Moreover, the localization accuracy and drift correction can be degraded by other fluorophores, instrument noise and artefacts due to image processing and tracking algorithms. Estimating mechanical drift by assuming Gaussian distributed noise is not suitable under these circumstances. Here we present a method that uses fluorescent nanodiamonds as fiducial markers and uses an improved maximum likelihood algorithm to estimate the drift with both accuracy and precision within the range 1.55-5.75 nm.
机译:基准标记用于校正显微镜漂移,应该光稳定,可在多个波长下使用,并兼容多模式成像。 珠子,金纳米颗粒,微制造图案和有机荧光团等基准标记缺乏这些标准中的一个或多个。 此外,本地化精度和漂移校正可以由其他荧光团,由于图像处理和跟踪算法而降解其他荧光团,仪器噪声和伪影。 假设高斯分布式噪声在这种情况下不适合估算机械漂移。 在这里,我们提出了一种方法,该方法使用荧光纳米金刚石作为基准标记,并使用改进的最大似然算法来估算漂移,精度和精度在1.55-5.75nm的范围内。

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