DocumentCode :
1251094
Title :
Parotid gland tissues investigated by picosecond time-gated and optical spectroscopic imaging techniques
Author :
Gayen, S.K. ; Alrubaiee, Mohammad ; Savage, Howard E. ; Schantz, Stimson P. ; Alfano, R.R.
Author_Institution :
Dept. of Phys., City Univ. of New York, NY, USA
Volume :
7
Issue :
6
fYear :
2001
Firstpage :
906
Lastpage :
911
Abstract :
Near-infrared (NIR) time-resolved and spectroscopic transillumination imaging techniques are used to investigate normal tissues and Warthin´s tumor of human parotid glands. The time-sliced imaging arrangement uses 120-fs, 1-kHz repetition-rate, 800-nm pulses from a Ti: sapphire laser and amplifier system for sample illumination and an ultrafast gated intensified camera system (UGICS) for recording two-dimensional (2-D) images using transmitted light. Images recorded with earlier temporal slices (approximately first 100 ps) of transmitted light highlight the tumor, while those recorded with later temporal slices (later than 200 ps) accentuate normal tissues. The spectroscopic imaging arrangement uses 1210-1300 nm tunable output of a Cr: forsterite laser for sample illumination, a Fourier space gate to discriminate against multiple-scattered light, and a NIR area camera to record 2-D images. The tumor region in the specimen appears brighter than the normal region in spectroscopic images recorded with light of different wavelengths. A wavelength-dependent variation in the ratio of light transmission through the tumor to that through the normal parotid gland is observed. Differences in scattering and wavelength-dependent absorption characteristics of normal parotid gland and Warthin´s tumor provide a consistent explanation of these observed features. Histopathological analysis of the specimen sheds light on the probable origin of the differences in scattering and absorption characteristics
Keywords :
bio-optics; biomedical imaging; high-speed optical techniques; infrared imaging; infrared spectroscopy; time resolved spectroscopy; tumours; 120 fs; 1210 to 1300 nm; 800 nm; NIR time-resolved imaging; Warthin´s tumor; highly scattering media; histopathological analysis; light transmission ratio; normal tissues; optical biomedical imaging; optical spectroscopic imaging; parotid gland tissues; photon propagation; picosecond time-gated imaging; transillumination imaging; two-dimensional images; ultrafast gated intensified camera; wavelength-dependent variation; Absorption; Cameras; Glands; Humans; Light scattering; Lighting; Neoplasms; Optical pulses; Pulse amplifiers; Spectroscopy;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/2944.983292
Filename :
983292
Link To Document :
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