Wright S J, Schatten G
Integrated Microscopy Resource, University of Wisconsin, Madison 53706.
J Electron Microsc Tech. 1991 May;18(1):2-10. doi: 10.1002/jemt.1060180103.
Several recent technological advances have considerably improved the field of confocal fluorescence microscopy. Improvements in confocal microscope design, new fluorescent probes and indicators, more sensitive imaging devices, and computer advances which allow for data manipulation and storage provide a convenient method to acquire complex three-dimensional (3-D) architectural details which previously were difficult or impossible to obtain from biological specimens. Applications of the laser scanning and tandem scanning confocal microscopes offer the potential for gaining powerful insights into the complex relationship of cellular structure and function. Confocal microscopy generates optical sections free from out-of-focus blur. With the development of new visualization tools to render and display complex 3-D data, a set of optical sections taken at different focal planes can be three-dimensionally reconstructed to create an animated sequence which can reveal latent features of the specimen. The combination of confocal microscopy and 3-D reconstruction provides a powerful new imaging tool to advance knowledge about structural and functional cellular properties as they occur dynamically in three dimensions.
最近的几项技术进步极大地改善了共聚焦荧光显微镜领域。共聚焦显微镜设计的改进、新型荧光探针和指示剂、更灵敏的成像设备以及允许进行数据处理和存储的计算机技术进步,提供了一种便捷的方法来获取复杂的三维(3-D)结构细节,而这些细节以前很难或无法从生物标本中获得。激光扫描共聚焦显微镜和串联扫描共聚焦显微镜的应用为深入了解细胞结构与功能的复杂关系提供了可能。共聚焦显微镜能够生成无焦外模糊的光学切片。随着用于呈现和显示复杂3-D数据的新可视化工具的发展,在不同焦平面拍摄的一组光学切片可以进行三维重建,以创建一个动画序列,从而揭示标本的潜在特征。共聚焦显微镜与3-D重建的结合提供了一种强大的新型成像工具,有助于推动我们对细胞结构和功能特性在三维空间中动态变化的认识。