Applied Laser Physics and Laser Spectroscopy, Physics Department, Bielefeld University, Universitätsstrasse 25, 33615 Bielefeld, Germany.
J Biotechnol. 2010 Sep 15;149(4):243-51. doi: 10.1016/j.jbiotec.2010.03.012. Epub 2010 Mar 27.
In the recent past, a variety of fluorescence microscopy methods emerged that proved to bypass a fundamental limit in light microscopy, the diffraction barrier. Among diverse methods that provide subdiffraction spatial resolution, far-field microscopic techniques are in particular important as they can be operated in complex biological samples such as cells or tissue. Valuable new insights into biomolecular structure, organization and even dynamic processes in living cells have been gained with these novel microscopic techniques. In the present review, the most important concepts of far-field microscopy with subdiffraction resolution are introduced. The underlying physical concepts are discussed, and practical considerations for the application of these methods are made.
在最近的一段时间里,出现了多种荧光显微镜方法,这些方法被证明绕过了光显微镜的一个基本限制,即衍射障碍。在提供亚衍射空间分辨率的各种方法中,远场显微镜技术尤其重要,因为它们可以在复杂的生物样品中操作,如细胞或组织。这些新型显微镜技术为生物分子结构、组织甚至活细胞中的动态过程提供了有价值的新见解。在本综述中,介绍了具有亚衍射分辨率的远场显微镜的最重要概念。讨论了其背后的物理概念,并对这些方法的应用进行了实际考虑。