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一种简单、廉价且多尺度的 3D 荧光测试样品,适用于光学切片显微镜。

A simple, inexpensive and multi-scale 3-D fluorescent test sample for optical sectioning microscopies.

机构信息

Department of Chemistry, Bar-Ilan University, Institute of Nanotechnology and Advanced Materials (BINA), Ramat-Gan, Israel.

Université de Paris, CNRS, SPPIN - Saints-Pères Paris Institute for the Neurosciences, Paris, France.

出版信息

Microsc Res Tech. 2021 Nov;84(11):2625-2635. doi: 10.1002/jemt.23813. Epub 2021 May 18.

DOI:10.1002/jemt.23813
PMID:34008289
Abstract

Fluorescence standards allow for quality control and for the comparison of data sets across instruments and laboratories in applications of quantitative fluorescence. For example, users of microscopy core facilities can expect a homogenous and time-invariant illumination and an uniform detection sensitivity, which are prerequisites for imaging analysis, tracking or fluorimetric pH or Ca -concentration measurements. Similarly, confirming the three-dimensional (3-D) resolution of optical sectioning microscopes calls for a regular calibration with a standardized point source. The test samples required for such measurements are typically different ones, they are often expensive and they depend much on the very microscope technique used. Similarly, the ever-increasing choice among microscope techniques and geometries increases the demand for comparison across instruments. Here, we advocate and demonstrate the multiple uses of a surprisingly versatile and simple 3-D test sample that can complement existing and much more expensive calibration samples: commercial tissue paper labeled with a fluorescent highlighter pen. We provide relevant sample characteristics and show examples ranging from the sub-μm to cm scale, acquired on epifluorescence, confocal, image scanning, two-photon (2P) and light-sheet microscopes.

摘要

荧光标准品可用于质量控制,并且可在定量荧光应用中比较不同仪器和实验室的数据。例如,显微镜核心设备的使用者可以预期获得均匀且时间不变的照明和均匀的检测灵敏度,这是成像分析、跟踪或荧光 pH 或 Ca 浓度测量的前提条件。同样,为了确认光学切片显微镜的三维(3D)分辨率,需要使用标准化的点源进行定期校准。此类测量所需的测试样本通常是不同的,它们通常很昂贵,并且很大程度上取决于所使用的显微镜技术。同样,显微镜技术和几何形状的选择越来越多,这增加了仪器之间比较的需求。在这里,我们提倡并展示了一种令人惊讶的多功能且简单的 3D 测试样本的多种用途,该样本可补充现有的、昂贵得多的校准样本:用荧光笔标记的商用纸巾。我们提供了相关的样本特征,并展示了从亚微米到厘米尺度的示例,这些示例是在明场、共聚焦、图像扫描、双光子(2P)和光片显微镜上获取的。

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