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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Beyond Rayleigh's criterion: A resolution measure with application to single-molecule microscopy
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Beyond Rayleigh's criterion: A resolution measure with application to single-molecule microscopy

机译:超越瑞利标准:一种分辨率测量方法,应用于单分子显微镜

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摘要

Rayleigh's criterion is extensively used in optical microscopy for determining the resolution of microscopes. This criterion imposes a resolution limit that has long been held as an impediment for studying nanoscale biological phenomenon through an optical microscope. However, it is well known that Rayleigh's criterion is based on intuitive notions. For example, Rayleigh's criterion is formulated in a deterministic setting that neglects the photon statistics of the acquired data. Hence it does not take into account the number of detected photons, which, in turn, raises concern over the use of Rayleigh's criterion in photon-counting techniques such as single-molecule microscopy. Here, we re-examine the resolution problem by adopting a stochastic framework and present a resolution measure that overcomes the limitations of Rayleigh's criterion. This resolution measure predicts that the resolution of optical microscopes is not limited and that it can be improved by increasing the number of detected photons. Experimental verification of the resolution measure is carried out by imaging single-molecule pairs with different distances of separation. The resolution measure provides a quantitative tool for designing and evaluating single-molecule experiments that probe biomolecular interactions.
机译:瑞利准则被广泛用于光学显微镜,以确定显微镜的分辨率。该标准强加了分辨率限制,该限制长期以来一直是通过光学显微镜研究纳米尺度生物现象的障碍。但是,众所周知,瑞利准则是基于直观概念的。例如,瑞利准则是在确定性设置中制定的,它忽略了所获取数据的光子统计。因此,它没有考虑到检测到的光子的数量,这反过来引起了人们对诸如单分子显微镜之类的光子计数技术中瑞利准则的使用的关注。在这里,我们通过采用随机框架重新检查分辨率问题,并提出一种克服瑞利准则限制的分辨率度量。该分辨率测量结果表明,光学显微镜的分辨率不受限制,可以通过增加检测到的光子数量来提高分辨率。通过对具有不同分离距离的单分子对进行成像,可以对分离度进行实验验证。分辨率测量为设计和评估探测生物分子相互作用的单分子实验提供了一种定量工具。

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