The OPFOS Microscopy Family: High-Resolution Optical Sectioning of Biomedical Specimens.

Anatomy research international Pub Date : 2012-01-01 Epub Date: 2011-11-03 DOI:10.1155/2012/206238
Jan A N Buytaert, Emilie Descamps, Dominique Adriaens, Joris J J Dirckx
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引用次数: 29

Abstract

We report on the recently emerging (laser) light-sheet-based fluorescence microscopy field (LSFM). The techniques used in this field allow to study and visualize biomedical objects nondestructively in high resolution through virtual optical sectioning with sheets of laser light. Fluorescence originating in the cross-section of the sheet and sample is recorded orthogonally with a camera. In this paper, the first implementation of LSFM to image biomedical tissue in three dimensions-orthogonal-plane fluorescence optical sectioning microscopy (OPFOS)-is discussed. Since then many similar and derived methods have surfaced, (SPIM, ultramicroscopy, HR-OPFOS, mSPIM, DSLM, TSLIM, etc.) which we all briefly discuss. All these optical sectioning methods create images showing histological detail. We illustrate the applicability of LSFM on several specimen types with application in biomedical and life sciences.

Abstract Image

Abstract Image

Abstract Image

OPFOS显微镜家族:生物医学标本的高分辨率光学切片。
我们报告了最近出现的(激光)光片荧光显微镜领域(LSFM)。该领域使用的技术允许通过激光片的虚拟光学切片以高分辨率无损地研究和可视化生物医学物体。在薄片和样品的横截面上产生的荧光用照相机垂直记录下来。本文讨论了LSFM在三维生物医学组织成像中的首次实现——正交平面荧光光学切片显微镜(OPFOS)。从那时起,许多类似的和衍生的方法浮出水面,(SPIM,超微显微镜,HR-OPFOS, mSPIM, DSLM, TSLIM等),我们都简要讨论。所有这些光学切片方法都能产生显示组织学细节的图像。我们说明了LSFM在几种标本类型上的适用性,以及在生物医学和生命科学中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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