DocumentCode :
593783
Title :
Quantitative spectroscopic tomography for the non-invasive measurement of the biogenic-substances
Author :
Wei Qi ; Kojima, D. ; Sato, Seiki ; Suzuki, Satoshi ; Abeygunawardhana, Pradeep K. W. ; Nishiyama, A. ; Ishimaru, Ichiro
Author_Institution :
Dept. of Intell. Mech. Syst. Eng., Kagawa Univ., Kagawa, Japan
fYear :
2012
fDate :
21-23 Nov. 2012
Firstpage :
280
Lastpage :
285
Abstract :
The non-invasive blood sugar sensor by using imaging-type 2-dimensional Fourier spectroscopy is to be realized in this work. The spectroscopic imaging, that observes the biological tissue by the dark-field image, can measure the biogenic substance quantitatively such as the glucose concentration. For the quantitative analysis with high accuracy, the correction of the background such as the light-source fluctuation and the phase-shift uncertainty is inevitable issue. Thus, the quantitative bandpass plate on which the grating is locally formed has been proposed in this paper. Here, the diffractive light, whose diffraction angle depends on the wavelength, has been used as the reference light Object lens is used to narrow down the reference light and narrowed band pass diffraction light is obtained. The changes of imaging intensities with interference phenomenon on whole area of the observation image can be confirmed using the quantitative band pass filter. Thus, the light-source fluctuation from the amplitude of the reference light intensity and the phase-shift uncertainly from the interference-phase can be corrected respectively. In this paper, the theoretical accuracy of Fourier spectroscopy calculated with the numerical simulation and the background correction method of the spectral-absorption-index image by the diffraction grating type quantitative bandpass plate are presented.
Keywords :
biological tissues; biomedical optical imaging; optical tomography; sugar; biogenic-substances; biological tissue; dark-field image; diffraction angle; diffractive light; glucose concentration; imaging-type 2-dimensional Fourier spectroscopy; interference phenomenon; interference-phase; light-source fluctuation; narrowed band pass diffraction light; noninvasive blood sugar sensor; phase-shift uncertainly; phase-shift uncertainty; quantitative analysis; quantitative band pass filter; quantitative spectroscopic tomography; reference light intensity; spectral-absorption-index image; spectroscopic imaging;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mechatronics (MECATRONICS) , 2012 9th France-Japan & 7th Europe-Asia Congress on and Research and Education in Mechatronics (REM), 2012 13th Int'l Workshop on
Conference_Location :
Paris
Print_ISBN :
978-1-4673-4770-9
Electronic_ISBN :
978-1-4673-4771-6
Type :
conf
DOI :
10.1109/MECATRONICS.2012.6451021
Filename :
6451021
Link To Document :
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