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Super-resolution re-scan second harmonic generation microscopy.


ABSTRACT: Second harmonic generation microscopy (SHG) is generally acknowledged as a powerful tool for the label-free three-dimensional visualization of tissues and advanced materials, with one of its most popular applications being collagen imaging. Despite the great need, progress in super-resolved SHG imaging lags behind the developments reported over the past years in fluorescence-based optical nanoscopy. In this work, we demonstrate super-resolved re-scan SHG, qualitatively and quantitatively showing on collagenous tissues the available resolution advantage over the diffraction limit. We introduce as well super-resolved re-scan two-photon excited fluorescence microscopy, an imaging modality not explored to date.

SUBMITTER: Stanciu SG 

PROVIDER: S-EPMC9704717 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Super-resolution re-scan second harmonic generation microscopy.

Stanciu Stefan G SG   Hristu Radu R   Stanciu George A GA   Tranca Denis E DE   Eftimie Lucian L   Dumitru Adrian A   Costache Mariana M   Stenmark Harald A HA   Manders Harm H   Cherian Amit A   Tark-Dame Mariliis M   Manders Erik M M EMM  

Proceedings of the National Academy of Sciences of the United States of America 20221114 47


Second harmonic generation microscopy (SHG) is generally acknowledged as a powerful tool for the label-free three-dimensional visualization of tissues and advanced materials, with one of its most popular applications being collagen imaging. Despite the great need, progress in super-resolved SHG imaging lags behind the developments reported over the past years in fluorescence-based optical nanoscopy. In this work, we demonstrate super-resolved re-scan SHG, qualitatively and quantitatively showing  ...[more]

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