DocumentCode
1244549
Title
Ultrafast method for the analysis of fluorescence lifetime imaging microscopy data based on the Laguerre expansion technique
Author
Jo, Javier A. ; Fang, Qiyin ; Marcu, Laura
Author_Institution
Biophotonics Res. & Technol. Dev., Cedars-Sinai Med. Center, Los Angeles, CA, USA
Volume
11
Issue
4
fYear
2005
Firstpage
835
Lastpage
845
Abstract
We report a new deconvolution method for fluorescence lifetime imaging microscopy (FLIM) based on the Laguerre expansion technique. The performance of this method was tested on synthetic and real FLIM images. The following interesting properties of this technique were demonstrated. 1) The fluorescence intensity decay can be estimated simultaneously for all pixels, without a priori assumption of the decay functional form. 2) The computation speed is extremely fast, performing at least two orders of magnitude faster than current algorithms. 3) The estimated maps of Laguerre expansion coefficients provide a new domain for representing FLIM information. 4) The number of images required for the analysis is relatively small, allowing reduction of the acquisition time. These findings indicate that the developed Laguerre expansion technique for FLIM analysis represents a robust and extremely fast deconvolution method that enables practical applications of FLIM in medicine, biology, biochemistry, and chemistry.
Keywords
biomedical optical imaging; deconvolution; fluorescence; optical microscopy; stochastic processes; Laguerre expansion technique; deconvolution; fluorescence decay; fluorescence lifetime imaging microscopy; Algorithm design and analysis; Biochemical analysis; Deconvolution; Fluorescence; Image analysis; Information analysis; Microscopy; Performance analysis; Pixel; Testing; Discrete Laguerre basis expansion; fluorescence decay deconvolution method; fluorescence lifetime imaging microscopy (FLIM); global analysis;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2005.857685
Filename
1545984
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