DocumentCode
1525741
Title
Fluorophore quantitation in tissue-simulating media with confocal detection
Author
Pogue, Brian W. ; Hasan, Tayyaba
Author_Institution
Dept. of Dermatology, Harvard Med. Sch., Boston, MA, USA
Volume
2
Issue
4
fYear
1996
fDate
12/1/1996 12:00:00 AM
Firstpage
959
Lastpage
964
Abstract
Fluorescence measurements from tissue are increasingly being used as a medical diagnostic procedure to assess tissue malignancy or tissue function. Unfortunately, the reemitted fluorescent intensity measured from a tissue surface is not necessarily proportional to the fluorophore concentration because the light is altered by the tissue´s intrinsic absorption and scattering properties. By measuring fluorescence from tissue volumes which are smaller than the average scattering length, the effects of the tissue´s intrinsic absorption are diminished. In this study, experiments with tissue simulating phantoms are used, as well as Monte Carlo simulations of the experiment, to demonstrate the utility of point fluorescence detection for diagnostic measurements. Potential applications of this technique range from photosensitizer quantitation in vivo, pharmacokinetic measurements of fluorophore in different tissues, to any application where fluorophore quantification is required from a highly scattering medium
Keywords
Monte Carlo methods; fluorescence spectroscopy; laser applications in medicine; light absorption; light scattering; molecular biophysics; optical signal detection; patient diagnosis; turbidity; Ar ion pumped dye laser; Monte Carlo simulations; confocal detection; fluorescence measurements; fluorophore concentration; fluorophore quantitation; highly scattering medium; in vivo; medical diagnostic procedure; pharmacokinetic measurements; photosensitizer quantitation; point fluorescence detection; reemitted fluorescent intensity; scattering properties; tissue function; tissue intrinsic absorption; tissue malignancy; tissue simulating phantoms; tissue surface; tissue volumes; tissue-simulating media; Absorption; Apertures; Cancer; Fluorescence; Imaging phantoms; Laboratories; Laser excitation; Light scattering; Optical scattering; Pump lasers;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/2944.577322
Filename
577322
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