Lichtman Jeff W, Conchello José-Angel
Department of Molecular and Cell Biology, Harvard University, 7 Divinity Avenue, Cambridge, Massachusetts 02138, USA.
Nat Methods. 2005 Dec;2(12):910-9. doi: 10.1038/nmeth817.
Although fluorescence microscopy permeates all of cell and molecular biology, most biologists have little experience with the underlying photophysical phenomena. Understanding the principles underlying fluorescence microscopy is useful when attempting to solve imaging problems. Additionally, fluorescence microscopy is in a state of rapid evolution, with new techniques, probes and equipment appearing almost daily. Familiarity with fluorescence is a prerequisite for taking advantage of many of these developments. This review attempts to provide a framework for understanding excitation of and emission by fluorophores, the way fluorescence microscopes work, and some of the ways fluorescence can be optimized.
尽管荧光显微镜在细胞和分子生物学中无处不在,但大多数生物学家对其潜在的光物理现象却鲜有经验。在尝试解决成像问题时,了解荧光显微镜的基本原理会很有帮助。此外,荧光显微镜正处于快速发展阶段,几乎每天都有新技术、探针和设备问世。熟悉荧光是利用其中许多进展的先决条件。本综述试图提供一个框架,以理解荧光团的激发和发射、荧光显微镜的工作方式,以及优化荧光的一些方法。