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用于荧光显微镜的弧光灯和单色仪。

Arc lamps and monochromators for fluorescence microscopy.

作者信息

Uhl Rainer

出版信息

Cold Spring Harb Protoc. 2012 Sep 1;2012(9):931-6. doi: 10.1101/pdb.top071001.

Abstract

Fluorescence microscopy requires high photon-flux densities in the specimen plane. These intensities are only achieved by lasers, arc lamps, and, most recently, light-emitting diodes (LEDs). Lasers and LEDs, however, are restricted to a limited number of wavelength regions, whereas with arc lamps it is possible to select arbitrary wavelengths and wavelength regions. Moreover, the lower cost of arc lamps, compared with lasers, makes them the light source of choice for the majority of fluorescence microscopy applications. Recently, so-called white light lasers have become commercially available, but their photon fluxes--although sufficient for laser scanning applications--are still not high enough for applications where extended areas need to be illuminated. This article discusses arc lamps and the design and performance of an arc lamp-based illumination system for fluorescence microscopy that allows the user to choose any wavelength from ultraviolet (UV) to infrared. The system permits rapid switching speed between colors, while maintaining quite stable and homogenous emissions.

摘要

荧光显微镜需要在样品平面上有高光子通量密度。这些强度只能通过激光、弧光灯以及最近的发光二极管(LED)来实现。然而,激光和LED仅限于有限数量的波长区域,而使用弧光灯则可以选择任意波长和波长区域。此外,与激光相比,弧光灯成本较低,这使其成为大多数荧光显微镜应用的首选光源。最近,所谓的白光激光器已开始商业化,但它们的光子通量——尽管足以用于激光扫描应用——对于需要照亮大面积区域的应用来说仍然不够高。本文讨论了弧光灯以及一种基于弧光灯的荧光显微镜照明系统的设计和性能,该系统允许用户选择从紫外(UV)到红外的任何波长。该系统允许在颜色之间快速切换,同时保持相当稳定和均匀的发射。

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