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使用简易受激发射损耗(EasySTED)改装共聚焦显微镜的无衍射荧光成像

Diffraction-Unlimited Fluorescence Imaging with an EasySTED Retrofitted Confocal Microscope.

作者信息

Klauss André, Hille Carsten

机构信息

Department of Physical Chemistry/Applied Laser Sensing in Complex Biosystems (ALS ComBi), Institute of Chemistry, University of Potsdam, Karl-Liebknecht-Str. 24-25, 14476, Potsdam, OT Golm, Germany.

出版信息

Methods Mol Biol. 2017;1663:29-44. doi: 10.1007/978-1-4939-7265-4_4.

Abstract

The easySTED technology provides the means to retrofit a confocal microscope to a diffraction-unlimited stimulated emission depletion (STED) microscope.Although commercial STED systems are available today, for many users of confocal laser scanning microscopes the option of retrofitting their confocal system to a STED system ready for diffraction-unlimited imaging may present an attractive option. The easySTED principle allowing for a joint beam path of excitation and depletion light promises some advantages concerning technical complexity and alignment effort for such an STED upgrade. In the one beam path design of easySTED the use of a common laser source, either a supercontinuum source or two separate lasers coupled into the same single-mode fiber, becomes feasible. The alignment of the focal light distribution of the STED beam relative to that of the excitation beam in all three spatial dimensions is therefore omitted respectively reduced to coupling the STED laser into the common single-mode fiber. Thus, only minor modifications need to be applied to the beam path in the confocal microscope to be upgraded. Those comprise adding polarization control elements and the easySTED waveplate, and adapting the beamsplitter to the excitation/STED wavelength combination.

摘要

easySTED技术提供了一种将共聚焦显微镜改装为衍射极限受激发射损耗(STED)显微镜的方法。尽管如今已有商用STED系统,但对于许多共聚焦激光扫描显微镜用户而言,将他们的共聚焦系统改装为可进行衍射极限成像的STED系统可能是一个有吸引力的选择。easySTED原理允许激发光和损耗光共用一个光束路径,这在技术复杂性和这种STED升级所需的对准工作方面具有一些优势。在easySTED的单光束路径设计中,使用共同的激光源,即超连续谱源或耦合到同一单模光纤中的两个独立激光器,变得可行。因此,在所有三个空间维度上,STED光束的焦斑光分布相对于激发光束的焦斑光分布的对准分别被省略或简化为将STED激光耦合到共同的单模光纤中。因此,对于要升级的共聚焦显微镜,只需对光束路径进行微小修改。这些修改包括添加偏振控制元件和easySTED波片,以及使分束器适应激发/STED波长组合。

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