Literature DB >> 26977356

Model-free uncertainty estimation in stochastical optical fluctuation imaging (SOFI) leads to a doubled temporal resolution.

Wim Vandenberg1, Sam Duwé1, Marcel Leutenegger2, Benjamien Moeyaert1, Bartosz Krajnik3, Theo Lasser4, Peter Dedecker1.   

Abstract

Stochastic optical fluctuation imaging (SOFI) is a super-resolution fluorescence imaging technique that makes use of stochastic fluctuations in the emission of the fluorophores. During a SOFI measurement multiple fluorescence images are acquired from the sample, followed by the calculation of the spatiotemporal cumulants of the intensities observed at each position. Compared to other techniques, SOFI works well under conditions of low signal-to-noise, high background, or high emitter densities. However, it can be difficult to unambiguously determine the reliability of images produced by any superresolution imaging technique. In this work we present a strategy that enables the estimation of the variance or uncertainty associated with each pixel in the SOFI image. In addition to estimating the image quality or reliability, we show that this can be used to optimize the signal-to-noise ratio (SNR) of SOFI images by including multiple pixel combinations in the cumulant calculation. We present an algorithm to perform this optimization, which automatically takes all relevant instrumental, sample, and probe parameters into account. Depending on the optical magnification of the system, this strategy can be used to improve the SNR of a SOFI image by 40% to 90%. This gain in information is entirely free, in the sense that it does not require additional efforts or complications. Alternatively our approach can be applied to reduce the number of fluorescence images to meet a particular quality level by about 30% to 50%, strongly improving the temporal resolution of SOFI imaging.

Keywords:  (100.6640) Superresolution; (170.2520) Fluorescence microscopy

Year:  2016        PMID: 26977356      PMCID: PMC4771465          DOI: 10.1364/BOE.7.000467

Source DB:  PubMed          Journal:  Biomed Opt Express        ISSN: 2156-7085            Impact factor:   3.732


  22 in total

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2.  Superresolution optical fluctuation imaging with organic dyes.

Authors:  Thomas Dertinger; Mike Heilemann; Robert Vogel; Markus Sauer; Shimon Weiss
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3.  Ultra-high resolution imaging by fluorescence photoactivation localization microscopy.

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Journal:  Biophys J       Date:  2006-09-15       Impact factor: 4.033

4.  Fast, background-free, 3D super-resolution optical fluctuation imaging (SOFI).

Authors:  T Dertinger; R Colyer; G Iyer; S Weiss; J Enderlein
Journal:  Proc Natl Acad Sci U S A       Date:  2009-12-14       Impact factor: 11.205

Review 5.  Diffraction-unlimited imaging: from pretty pictures to hard numbers.

Authors:  Wim Vandenberg; Marcel Leutenegger; Theo Lasser; Johan Hofkens; Peter Dedecker
Journal:  Cell Tissue Res       Date:  2015-02-28       Impact factor: 5.249

6.  Fluorescent proteins: shine on, you crazy diamond.

Authors:  Peter Dedecker; Frans C De Schryver; Johan Hofkens
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7.  Green-to-red photoconvertible Dronpa mutant for multimodal super-resolution fluorescence microscopy.

Authors:  Benjamien Moeyaert; Ngan Nguyen Bich; Elke De Zitter; Susana Rocha; Koen Clays; Hideaki Mizuno; Luc van Meervelt; Johan Hofkens; Peter Dedecker
Journal:  ACS Nano       Date:  2014-01-21       Impact factor: 15.881

8.  High-resolution single-molecule fluorescence imaging of zeolite aggregates within real-life fluid catalytic cracking particles.

Authors:  Zoran Ristanović; Marleen M Kerssens; Alexey V Kubarev; Frank C Hendriks; Peter Dedecker; Johan Hofkens; Maarten B J Roeffaers; Bert M Weckhuysen
Journal:  Angew Chem Int Ed Engl       Date:  2014-12-12       Impact factor: 15.336

9.  Live-cell multiplane three-dimensional super-resolution optical fluctuation imaging.

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Journal:  Nat Commun       Date:  2014-12-18       Impact factor: 14.919

10.  Simple super-resolution live-cell imaging based on diffusion-assisted Förster resonance energy transfer.

Authors:  Sangyeon Cho; Jaeduck Jang; Chaeyeon Song; Heeyoung Lee; Prabhakar Ganesan; Tae-Young Yoon; Mahn Won Kim; Myung Chul Choi; Hyotcherl Ihee; Won Do Heo; YongKeun Park
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  6 in total

Review 1.  Technological advances in super-resolution microscopy to study cellular processes.

Authors:  Charles Bond; Adriana N Santiago-Ruiz; Qing Tang; Melike Lakadamyali
Journal:  Mol Cell       Date:  2022-01-20       Impact factor: 17.970

2.  Complementarity of PALM and SOFI for super-resolution live-cell imaging of focal adhesions.

Authors:  Hendrik Deschout; Tomas Lukes; Azat Sharipov; Daniel Szlag; Lely Feletti; Wim Vandenberg; Peter Dedecker; Johan Hofkens; Marcel Leutenegger; Theo Lasser; Aleksandra Radenovic
Journal:  Nat Commun       Date:  2016-12-19       Impact factor: 14.919

3.  Correcting for photodestruction in super-resolution optical fluctuation imaging.

Authors:  Yves Peeters; Wim Vandenberg; Sam Duwé; Arno Bouwens; Tomáš Lukeš; Cyril Ruckebusch; Theo Lasser; Peter Dedecker
Journal:  Sci Rep       Date:  2017-09-05       Impact factor: 4.379

4.  Effect of probe diffusion on the SOFI imaging accuracy.

Authors:  Wim Vandenberg; Peter Dedecker
Journal:  Sci Rep       Date:  2017-03-23       Impact factor: 4.379

5.  Genetically encoded biosensors for visualizing live-cell biochemical activity at super-resolution.

Authors:  Gary C H Mo; Brian Ross; Fabian Hertel; Premashis Manna; Xinxing Yang; Eric Greenwald; Chris Booth; Ashlee M Plummer; Brian Tenner; Zan Chen; Yuxiao Wang; Eileen J Kennedy; Philip A Cole; Karen G Fleming; Amy Palmer; Ralph Jimenez; Jie Xiao; Peter Dedecker; Jin Zhang
Journal:  Nat Methods       Date:  2017-03-13       Impact factor: 28.547

6.  Reduced Fluorescent Protein Switching Fatigue by Binding-Induced Emissive State Stabilization.

Authors:  Thijs Roebroek; Sam Duwé; Wim Vandenberg; Peter Dedecker
Journal:  Int J Mol Sci       Date:  2017-09-20       Impact factor: 5.923

  6 in total

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