Shaw P
Department of Cell Biology, John Innes Centre, Norwich, UK.
Histochem J. 1994 Sep;26(9):687-94. doi: 10.1007/BF00158201.
Fluorescent probes are becoming ever more widely used in the study of subcellular structure, and determination of their three-dimensional distributions has become very important. Confocal microscopy is now a common technique for overcoming the problem of out-of-focus flare in fluorescence imaging, but an alternative method uses digital image processing of conventional fluorescence images--a technique often termed 'deconvolution' or 'restoration'. This review attempts to explain image deconvolution in a non-technical manner. It is also applicable to 3-D confocal images, and can provide a further significant improvement in clarity and interpretability of such images. Some examples of the application of image deconvolution to both conventional and confocal fluorescence images are shown.
荧光探针在亚细胞结构研究中的应用越来越广泛,确定其三维分布变得非常重要。共聚焦显微镜现在是克服荧光成像中离焦光晕问题的常用技术,但另一种方法是对传统荧光图像进行数字图像处理——这种技术通常称为“去卷积”或“恢复”。本综述试图以非技术方式解释图像去卷积。它也适用于三维共聚焦图像,并且可以进一步显著提高此类图像的清晰度和可解释性。文中展示了图像去卷积在传统荧光图像和共聚焦荧光图像中的一些应用实例。