Randall Division, King's College London, Guy's Campus, London, UK.
Nat Methods. 2011 Dec 4;9(2):195-200. doi: 10.1038/nmeth.1812.
We describe a localization microscopy analysis method that is able to extract results in live cells using standard fluorescent proteins and xenon arc lamp illumination. Our Bayesian analysis of the blinking and bleaching (3B analysis) method models the entire dataset simultaneously as being generated by a number of fluorophores that may or may not be emitting light at any given time. The resulting technique allows many overlapping fluorophores in each frame and unifies the analysis of the localization from blinking and bleaching events. By modeling the entire dataset, we were able to use each reappearance of a fluorophore to improve the localization accuracy. The high performance of this technique allowed us to reveal the nanoscale dynamics of podosome formation and dissociation throughout an entire cell with a resolution of 50 nm on a 4-s timescale.
我们描述了一种定位显微镜分析方法,该方法能够使用标准荧光蛋白和氙弧灯照明从活细胞中提取结果。我们对闪烁和漂白(3B 分析)方法的贝叶斯分析同时对可能随时发光或不发光的多个荧光团生成的整个数据集进行建模。该技术允许在每一帧中有许多重叠的荧光团,并统一了对闪烁和漂白事件的定位分析。通过对整个数据集进行建模,我们能够利用荧光团的每次再现来提高定位精度。该技术的高性能使我们能够在 4 秒的时间尺度上以 50nm 的分辨率揭示整个细胞中破骨细胞形成和解离的纳米级动力学。