Chandler Talon, Shroff Hari, Oldenbourg Rudolf, La Rivière Patrick
J Opt Soc Am A Opt Image Sci Vis. 2019 Aug 1;36(8):1334-1345. doi: 10.1364/JOSAA.36.001334.
We introduce the basic elements of a spatio-angular theory of fluorescence microscopy, providing a unified framework for analyzing systems that image single fluorescent dipoles and ensembles of overlapping dipoles that label biological molecules. We model an aplanatic microscope imaging an ensemble of fluorescent dipoles as a linear Hilbert-space operator, and we show that the operator takes a particularly convenient form when expressed in a basis of complex exponentials and spherical harmonics-a form we call the dipole spatio-angular transfer function. We discuss the implications of our analysis for all quantitative fluorescence microscopy studies and lay out a path toward a complete theory.
我们介绍了荧光显微镜的空间角理论的基本要素,为分析对单个荧光偶极子以及标记生物分子的重叠偶极子集合进行成像的系统提供了一个统一的框架。我们将对荧光偶极子集合进行成像的齐明显微镜建模为一个线性希尔伯特空间算子,并表明当以复指数和球谐函数为基来表示时,该算子具有一种特别方便的形式——我们将这种形式称为偶极子空间角传递函数。我们讨论了我们的分析对所有定量荧光显微镜研究的意义,并规划了一条通向完整理论的道路。