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基于示例的超分辨率荧光显微镜。

Example-Based Super-Resolution Fluorescence Microscopy.

机构信息

Department of Biomedical Engineering, Stony Brook University, State University of New York, Stony Brook, New York, USA.

Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts, USA.

出版信息

Sci Rep. 2018 Apr 23;8(1):5700. doi: 10.1038/s41598-018-24033-7.

Abstract

Capturing biological dynamics with high spatiotemporal resolution demands the advancement in imaging technologies. Super-resolution fluorescence microscopy offers spatial resolution surpassing the diffraction limit to resolve near-molecular-level details. While various strategies have been reported to improve the temporal resolution of super-resolution imaging, all super-resolution techniques are still fundamentally limited by the trade-off associated with the longer image acquisition time that is needed to achieve higher spatial information. Here, we demonstrated an example-based, computational method that aims to obtain super-resolution images using conventional imaging without increasing the imaging time. With a low-resolution image input, the method provides an estimate of its super-resolution image based on an example database that contains super- and low-resolution image pairs of biological structures of interest. The computational imaging of cellular microtubules agrees approximately with the experimental super-resolution STORM results. This new approach may offer potential improvements in temporal resolution for experimental super-resolution fluorescence microscopy and provide a new path for large-data aided biomedical imaging.

摘要

利用高时空分辨率捕捉生物动力学需要先进的成像技术。超分辨率荧光显微镜提供了超越衍射极限的空间分辨率,可解析接近分子级别的细节。虽然已经报道了各种提高超分辨率成像时间分辨率的策略,但所有超分辨率技术仍然受到与获得更高空间信息所需的更长成像时间相关的权衡限制。在这里,我们展示了一种基于实例的计算方法,旨在在不增加成像时间的情况下使用常规成像获得超分辨率图像。该方法以低分辨率图像作为输入,基于包含感兴趣生物结构的超分辨率和低分辨率图像对的示例数据库,对其超分辨率图像进行估计。细胞微管的计算成像与实验超分辨率 STORM 结果大致相符。这种新方法可能为实验超分辨率荧光显微镜的时间分辨率提供潜在的改进,并为大数据辅助的生物医学成像提供新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ca2/5913229/07346e8d763c/41598_2018_24033_Fig1_HTML.jpg

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