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跟踪显微镜性能:一种随时间比较点扩散函数评估的工作流程。

Tracking Microscope Performance: A Workflow to Compare Point Spread Function Evaluations Over Time.

机构信息

Core Facility Bioimaging at the Biomedical Center and Walter-Brendel-Zentrum für Experimentelle Medizin, Ludwig-Maximilians-Univeristät München,Großhaderner Straße 9, 82152 Planegg-Martinsried,Germany.

出版信息

Microsc Microanal. 2019 Jun;25(3):699-704. doi: 10.1017/S1431927619000060. Epub 2019 Feb 6.

Abstract

Routine system checks are essential for supervising the performance of an advanced light microscope. Recording and evaluating the point spread function (PSF) of a given system provides information about the resolution and imaging. We compared the performance of fluorescent and gold beads for PSF recordings. We then combined the open-source evaluation software PSFj with a newly developed KNIME pipeline named PSFtracker to create a standardized workflow to track a system's performance over several measurements and thus over long time periods. PSFtracker produces example images of recorded PSFs, plots full-width-half-maximum (FWHM) measurements over time and creates an html file which embeds the images and plots, together with a table of results. Changes of the PSF over time are thus easily spotted, either in FWHM plots or in the time series of bead images which allows recognition of aberrations in the shape of the PSF. The html file, viewed in a local browser or uploaded on the web, therefore provides intuitive visualization of the state of the PSF over time. In addition, uploading of the html file on the web allows other microscopists to compare such data with their own.

摘要

常规系统检查对于监督高级显微镜的性能至关重要。记录和评估给定系统的点扩散函数 (PSF) 提供了有关分辨率和成像的信息。我们比较了荧光和金珠在 PSF 记录方面的性能。然后,我们将开源评估软件 PSFj 与新开发的名为 PSFtracker 的 KNIME 管道相结合,创建了一个标准化的工作流程,可以在多次测量和长时间内跟踪系统的性能。PSFtracker 会生成记录的 PSF 的示例图像,绘制随时间变化的全宽半最大值 (FWHM) 测量值,并创建一个 html 文件,其中嵌入图像和绘图,以及结果表。因此,可以轻松地在 FWHM 图或珠状图像的时间序列中发现 PSF 随时间的变化,从而识别 PSF 形状的偏差。在本地浏览器中查看 html 文件或上传到网络上,因此可以直观地显示 PSF 随时间的状态。此外,将 html 文件上传到网络上允许其他显微镜检查人员将这些数据与他们自己的数据进行比较。

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