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多信号分类算法在超高分辨率荧光显微镜中的应用。

Multiple signal classification algorithm for super-resolution fluorescence microscopy.

机构信息

BioSystems and Micromechanics Inter-Disciplinary Research Group, Singapore-MIT Alliance for Research and Technology, 1 CREATE Way, 04-13/14 Enterprise Wing, Singapore 138602, Singapore.

Department of Biological Sciences and Centre for BioImaging Sciences, National University of Singapore, 14 Science Drive 4, Singapore 117543, Singapore.

出版信息

Nat Commun. 2016 Dec 9;7:13752. doi: 10.1038/ncomms13752.

Abstract

Single-molecule localization techniques are restricted by long acquisition and computational times, or the need of special fluorophores or biologically toxic photochemical environments. Here we propose a statistical super-resolution technique of wide-field fluorescence microscopy we call the multiple signal classification algorithm which has several advantages. It provides resolution down to at least 50 nm, requires fewer frames and lower excitation power and works even at high fluorophore concentrations. Further, it works with any fluorophore that exhibits blinking on the timescale of the recording. The multiple signal classification algorithm shows comparable or better performance in comparison with single-molecule localization techniques and four contemporary statistical super-resolution methods for experiments of in vitro actin filaments and other independently acquired experimental data sets. We also demonstrate super-resolution at timescales of 245 ms (using 49 frames acquired at 200 frames per second) in samples of live-cell microtubules and live-cell actin filaments imaged without imaging buffers.

摘要

单分子定位技术受到采集和计算时间长、需要特殊荧光团或生物毒性光化学环境的限制。在这里,我们提出了一种宽场荧光显微镜的统计超分辨率技术,我们称之为多重信号分类算法,它具有几个优点。它提供的分辨率至少可达 50nm,需要的帧数更少、激发功率更低,即使在高荧光团浓度下也能工作。此外,它适用于在记录时间尺度上表现出闪烁的任何荧光团。与单分子定位技术以及四种当代统计超分辨率方法相比,多重信号分类算法在体外肌动蛋白丝实验和其他独立获取的实验数据集的实验中表现出相当或更好的性能。我们还在没有成像缓冲液的情况下,在活细胞微管和活细胞肌动蛋白丝样本中,在 245ms 的时间尺度上进行了超分辨率成像(使用每秒 200 帧采集的 49 帧)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad74/5155148/00219e58bf08/ncomms13752-f1.jpg

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