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一种用于光学连续切片数字记录的共聚焦激光显微镜扫描仪。

A confocal laser microscope scanner for digital recording of optical serial sections.

作者信息

Carlsson K, Liljeborg A

机构信息

Physics IV, The Royal Institute of Technology, Stockholm, Sweden.

出版信息

J Microsc. 1989 Feb;153(Pt 2):171-80. doi: 10.1111/j.1365-2818.1989.tb00557.x.

Abstract

A confocal laser microscope scanner developed at our institute is described. Since an ordinary microscope is used, it is easy to view the specimen prior to scanning. Confocal imaging is obtained by laser spot illuminatin, and by focusing the reflected or fluorescent light from the specimen onto a pinhole aperture in front of the detector (a photomultiplier tube). Two rotating mirrors are used to scan the laser beam in a raster pattern. The scanner is controlled by a microprocessor which coordinated scanning, data display, and data transfer to a host computer equipped with an array processor. Digital images with up to 1024x1024 pixels and 256 grey levels can be recorded. The optical sectioning property of confocal scanning is used to record thin (about 1 microm) sections of a specimen without the need for mechanical sectioning. By using computer-control to adjust the focus of the microscope, a stack of consecutive sections can be automatically recorded. A computer is then used to display the 3-D structure of the specimen. It is also possible to obtain quantitative information, both geometric and photometric. In addition to confocal laser scanning, it is easy to perform non-confocal laser scanning, or to use conventional microscopic illumination techniques for (non-confocal) scanning. The design has proved reliable and stable, requiring very few adjustments and realignments. Results obtained with this scanner are reported, and some limitations of the technique are discussed.

摘要

本文描述了我们研究所开发的一种共聚焦激光显微镜扫描仪。由于使用的是普通显微镜,因此在扫描前很容易观察标本。通过激光点照明,并将来自标本的反射光或荧光聚焦到探测器(光电倍增管)前面的针孔孔径上,可获得共聚焦成像。使用两个旋转镜以光栅模式扫描激光束。该扫描仪由微处理器控制,微处理器协调扫描、数据显示以及将数据传输到配备阵列处理器的主机计算机。可以记录高达1024x1024像素和256个灰度级的数字图像。共聚焦扫描的光学切片特性用于记录标本的薄切片(约1微米),而无需进行机械切片。通过使用计算机控制来调整显微镜的焦点,可以自动记录一系列连续的切片。然后使用计算机显示标本的三维结构。还可以获得几何和光度学方面的定量信息。除了共聚焦激光扫描外,还很容易进行非共聚焦激光扫描,或使用传统的显微照明技术进行(非共聚焦)扫描。该设计已证明可靠且稳定,几乎不需要调整和重新校准。报告了使用该扫描仪获得的结果,并讨论了该技术的一些局限性。

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