Rapid hyperspectral fluorescence lifetime imaging

We report a rapid hyperspectral fluorescence lifetime imaging (FLIM) instrument that exploits high‐speed FLIM technology in a line‐scanning microscope. We demonstrate the acquisition of whole‐field optically sectioned hyperspectral fluorescence lifetime image stacks (with 32 spectral bins) in less t...

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Veröffentlicht in:Microscopy research and technique 2007-05, Vol.70 (5), p.481-484
Hauptverfasser: Beule, Pieter De, Owen, Dylan M., Manning, Hugh B., Talbot, Clifford B., Requejo-Isidro, Jose, Dunsby, Christopher, Mcginty, James, Benninger, Richard K.P., Elson, Daniel S., Munro, Ian, John Lever, M., Anand, Praveen, Neil, Mark A.A., French, Paul M.W.
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container_end_page 484
container_issue 5
container_start_page 481
container_title Microscopy research and technique
container_volume 70
creator Beule, Pieter De
Owen, Dylan M.
Manning, Hugh B.
Talbot, Clifford B.
Requejo-Isidro, Jose
Dunsby, Christopher
Mcginty, James
Benninger, Richard K.P.
Elson, Daniel S.
Munro, Ian
John Lever, M.
Anand, Praveen
Neil, Mark A.A.
French, Paul M.W.
description We report a rapid hyperspectral fluorescence lifetime imaging (FLIM) instrument that exploits high‐speed FLIM technology in a line‐scanning microscope. We demonstrate the acquisition of whole‐field optically sectioned hyperspectral fluorescence lifetime image stacks (with 32 spectral bins) in less than 40 s and illustrate its application to unstained biological tissue. Microsc. Res. Tech., 2007. © 2007 Wiley‐Liss, Inc.
doi_str_mv 10.1002/jemt.20434
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source MEDLINE; Wiley Online Library All Journals
subjects Arteries - chemistry
Arteries - ultrastructure
Convallaria - chemistry
Convallaria - ultrastructure
Diagnostic Imaging - methods
FLIM
fluorescence lifetime imaging
Humans
hyperspectral imaging
Microscopy, Fluorescence - methods
Time Factors
tissue autofluorescence
title Rapid hyperspectral fluorescence lifetime imaging
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