Full spectrum fluorescence lifetime imaging with 0.5 nm spectral and 50 ps temporal resolution

High data volumes from multidimensional imaging techniques can lead to slow collection and processing times. Here, the authors implement multispectral fluorescence lifetime imaging microscopy (FLIM) that uses time-correlated photon counting technology to reach simultaneously high imaging rates combi...

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Autores principales: Gareth O. S. Williams, Elvira Williams, Neil Finlayson, Ahmet T. Erdogan, Qiang Wang, Susan Fernandes, Ahsan R. Akram, Kev Dhaliwal, Robert K. Henderson, John M. Girkin, Mark Bradley
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/496919a623a54944bfcd2715fbf00eb9
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spelling oai:doaj.org-article:496919a623a54944bfcd2715fbf00eb92021-11-21T12:35:31ZFull spectrum fluorescence lifetime imaging with 0.5 nm spectral and 50 ps temporal resolution10.1038/s41467-021-26837-02041-1723https://doaj.org/article/496919a623a54944bfcd2715fbf00eb92021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-26837-0https://doaj.org/toc/2041-1723High data volumes from multidimensional imaging techniques can lead to slow collection and processing times. Here, the authors implement multispectral fluorescence lifetime imaging microscopy (FLIM) that uses time-correlated photon counting technology to reach simultaneously high imaging rates combined with high spectral and temporal resolution.Gareth O. S. WilliamsElvira WilliamsNeil FinlaysonAhmet T. ErdoganQiang WangSusan FernandesAhsan R. AkramKev DhaliwalRobert K. HendersonJohn M. GirkinMark BradleyNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gareth O. S. Williams
Elvira Williams
Neil Finlayson
Ahmet T. Erdogan
Qiang Wang
Susan Fernandes
Ahsan R. Akram
Kev Dhaliwal
Robert K. Henderson
John M. Girkin
Mark Bradley
Full spectrum fluorescence lifetime imaging with 0.5 nm spectral and 50 ps temporal resolution
description High data volumes from multidimensional imaging techniques can lead to slow collection and processing times. Here, the authors implement multispectral fluorescence lifetime imaging microscopy (FLIM) that uses time-correlated photon counting technology to reach simultaneously high imaging rates combined with high spectral and temporal resolution.
format article
author Gareth O. S. Williams
Elvira Williams
Neil Finlayson
Ahmet T. Erdogan
Qiang Wang
Susan Fernandes
Ahsan R. Akram
Kev Dhaliwal
Robert K. Henderson
John M. Girkin
Mark Bradley
author_facet Gareth O. S. Williams
Elvira Williams
Neil Finlayson
Ahmet T. Erdogan
Qiang Wang
Susan Fernandes
Ahsan R. Akram
Kev Dhaliwal
Robert K. Henderson
John M. Girkin
Mark Bradley
author_sort Gareth O. S. Williams
title Full spectrum fluorescence lifetime imaging with 0.5 nm spectral and 50 ps temporal resolution
title_short Full spectrum fluorescence lifetime imaging with 0.5 nm spectral and 50 ps temporal resolution
title_full Full spectrum fluorescence lifetime imaging with 0.5 nm spectral and 50 ps temporal resolution
title_fullStr Full spectrum fluorescence lifetime imaging with 0.5 nm spectral and 50 ps temporal resolution
title_full_unstemmed Full spectrum fluorescence lifetime imaging with 0.5 nm spectral and 50 ps temporal resolution
title_sort full spectrum fluorescence lifetime imaging with 0.5 nm spectral and 50 ps temporal resolution
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/496919a623a54944bfcd2715fbf00eb9
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