Literature DB >> 35316608

Label-Free Super-Resolution Imaging Techniques.

Ryan E Leighton1, Ariel M Alperstein1, Renee R Frontiera1.   

Abstract

Biological and material samples contain nanoscale heterogeneities that are unresolvable with conventional microscopy techniques. Super-resolution fluorescence methods can break the optical diffraction limit to observe these features, but they require samples to be fluorescently labeled. Over the past decade, progress has been made toward developing super-resolution techniques that do not require the use of labels. These label-free techniques span a variety of different approaches, including structured illumination, transient absorption, infrared absorption, and coherent Raman spectroscopies. Many draw inspiration from widely successful fluorescence-based techniques such as stimulated emission depletion (STED) microscopy, photoactivated localization microscopy (PALM), and stochastic optical reconstruction microscopy (STORM). In this review, we discuss the progress made in these fields along with the current challenges and prospects in reaching resolutions comparable to those achieved with fluorescence-based methods.

Entities:  

Keywords:  chemical imaging; coherent Raman imaging; label-free; photothermal infrared; subdiffraction; super-resolution Raman microscopy

Mesh:

Year:  2022        PMID: 35316608      PMCID: PMC9454238          DOI: 10.1146/annurev-anchem-061020-014723

Source DB:  PubMed          Journal:  Annu Rev Anal Chem (Palo Alto Calif)        ISSN: 1936-1327            Impact factor:   12.400


  83 in total

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Authors:  M G Gustafsson
Journal:  J Microsc       Date:  2000-05       Impact factor: 1.758

Review 2.  Fluorescence lifetime measurements and biological imaging.

Authors:  Mikhail Y Berezin; Samuel Achilefu
Journal:  Chem Rev       Date:  2010-05-12       Impact factor: 60.622

3.  Analytical description of STED microscopy performance.

Authors:  Marcel Leutenegger; Christian Eggeling; Stefan W Hell
Journal:  Opt Express       Date:  2010-12-06       Impact factor: 3.894

4.  Three-dimensional super-resolution imaging by stochastic optical reconstruction microscopy.

Authors:  Bo Huang; Wenqin Wang; Mark Bates; Xiaowei Zhuang
Journal:  Science       Date:  2008-01-03       Impact factor: 47.728

5.  Visualizing vibrational normal modes of a single molecule with atomically confined light.

Authors:  Joonhee Lee; Kevin T Crampton; Nicholas Tallarida; V Ara Apkarian
Journal:  Nature       Date:  2019-04-03       Impact factor: 49.962

6.  Direct Imaging of Integrated Circuits in CPU with 60 nm Super-Resolution Optical Microscope.

Authors:  Guang Yang; Chi Yang; Yage Chen; Boyu Yu; Yali Bi; Jiangshan Liao; Haozheng Li; Hong Wang; Yuxi Wang; Ziyu Liu; Zongsong Gan; Quan Yuan; Yi Wang; Jinsong Xia; Ping Wang
Journal:  Nano Lett       Date:  2021-04-27       Impact factor: 11.189

7.  Dynamic placement of plasmonic hotspots for super-resolution surface-enhanced Raman scattering.

Authors:  Christopher T Ertsgaard; Rachel M McKoskey; Isabel S Rich; Nathan C Lindquist
Journal:  ACS Nano       Date:  2014-10-06       Impact factor: 15.881

8.  Selective Suppression of Stimulated Raman Scattering with Another Competing Stimulated Raman Scattering.

Authors:  Doyeon Kim; Dae Sik Choi; Jiwoong Kwon; Sang-Hee Shim; Hanju Rhee; Minhaeng Cho
Journal:  J Phys Chem Lett       Date:  2017-12-07       Impact factor: 6.475

9.  High-resolution imaging of autofluorescent particles within drusen using structured illumination microscopy.

Authors:  Sabrina Rossberger; Thomas Ach; Gerrit Best; Christoph Cremer; Rainer Heintzmann; Stefan Dithmar
Journal:  Br J Ophthalmol       Date:  2013-02-14       Impact factor: 4.638

Review 10.  Tip-enhanced Raman spectroscopy for surfaces and interfaces.

Authors:  Xiang Wang; Sheng-Chao Huang; Teng-Xiang Huang; Hai-Sheng Su; Jin-Hui Zhong; Zhi-Cong Zeng; Mao-Hua Li; Bin Ren
Journal:  Chem Soc Rev       Date:  2017-07-03       Impact factor: 54.564

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