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Penetration depth and Wave Propagation in Random Media

무질서한 매질에서 침투깊이와 파동 전파

  • Kim, Ki-Jun (Department. of Chemical Engineering, Dae-jin University) ;
  • Sung, Ki-Chun (Department. of Chemical Engineering, Dae-jin University)
  • 김기준 (대진대학교 공과대학 화학공학과) ;
  • 성기천 (대진대학교 공과대학 화학공학과)
  • Published : 2006.03.31

Abstract

The influence of fluorophor, scatterer, absorber in turbid materials by light scattering were interpreted for the scattered fluorescence intensity and wavelength, it is studied the molecular property by laser induced fluorescence spectroscopy. It can be found that the effects of optical property are penentrated in scattering media by the optical $parameters({\mu}s$, ${\mu}a$, ${\mu}t$, ${\gamma}$, ${\rho})$. The value of scattering coefficient ${\mu}s$ is large appeared by means of the increasing particles of scattering, it can be found that the slope appears exponentially as a function of distance from laser source to detector. It may also utilize in designing the best model for oil chemistry, laser medicine and application of medical engineering.

Keywords

References

  1. K. J. Kim and K. C. Sung, A Study on the Optical Influence by Photosensitizer in Vitro, J. of Korean Oil Chemist' Soc., 22(2), 182 (2005)
  2. K. J. Kim and K. C. Sung, A Study on Spectra of Laser Induced Fluorscence in Phantom, J. of Korean Oil Chemist' Soc., 16(4), 329 (1999)
  3. K. J. Kim and K. C. Sung, Monte Carlo Simulation on Light Distribution in Turbid Material, J. of Korean Oil Chemists Soc., 15(4), 11 (1998)
  4. K. J. Kim and K. C. Sung, Studies on Measurements of Optical Parameters in Turbid Material by Light Scattering, J. of Korean Oil Chemists Soc., 12(2), 151 (1995)
  5. S. L. Jacques and S. A. Prahl, Modeling Octical and Thermal Distribution in Tissue During Laser Irradiation, Laser in Surgery and Medicine 6, 494 (1987) https://doi.org/10.1002/lsm.1900060604
  6. B. C. Wilson, Y. D. Park, Y. Hefetz, M. S. Patterson, S. J. Madsen and S. L. Jacques, The Potential of Timeresolved Reflectance Measurements for the Noninvasive Determination of Tissue Optical Properties, in Thermal and Optical Interactions with Biological and Related Composite Materials, M. J. Berry and G. M. Harpole, eds., Proc. S. P. I. E., p. 97, (1989)
  7. S. L. Jacques, c. A. Alter, and S. A. Prahl, Angular Dependence of HeNe Laser Light Scattering by Human Dermis, Laser in the Life Science, 1(4), 309 (1987)
  8. R. R. Alfano, G. C. Tang, A. Pradhan, W. Ran, S. J. Daniel, and E Opher, Fluorescence Spectre from Cancerone and Normal Human Breast and Lung Tissues, IEEE J. Quan. Elec. QE, 23(10), 1806 (1987) https://doi.org/10.1109/JQE.1987.1073234
  9. R. W. Henderson, G. S. Christie, P. S, Clenzy, and J. Lineham, Haematoporphyrin Diacetate: A Probe to Distinguish Malignant from Normal Tissue by Selective Fluorescence, Br. J. Exp. Path. 61, 345 (1980)
  10. L. O. Poicard, C. J. Gomer, and A. E. Profio, Laser-Induced Hyperthermia of Ocular Tumors, Appl. Opt., 28(2), 2318 (1989) https://doi.org/10.1364/AO.28.002318
  11. M. Winkelmann, B. Chance, and B. C. Wilson, Time Resolved Reflectance and Transmittanance for the Noninvasive Measurement of Tissue Optical Properties, Appl. Opt., 28(2), 2331 (1989) https://doi.org/10.1364/AO.28.002331
  12. K. Lee, I. J. Forbes, and W. H. Betts, Oxygen Dependency of Photocytotoxicity with Hematoporphyrin Derivative, Photochem. Photobiol 39(5), 631 (1984) https://doi.org/10.1111/j.1751-1097.1984.tb03902.x
  13. R. Hilf, P. B. Leakey, S. J. Solltt, and S. L. Gibson, Photodynamic Inactivation of R3230AC Mammary Carcinoma in vitro with HPD: Effects of Dose, Time and Serum on Uptake and Phototoxicity, Photochern. Photobiol. 37(6), 633 (1983) https://doi.org/10.1111/j.1751-1097.1983.tb04532.x
  14. H. Schnecknburger, M. Frenz, Y. Tsnchiya, U. Denzer, and L. Schleinkofer, Picosecond Fluorescence Microscopy for Measuring Chlorophyll and Porphyrin Components in Conifers and Cultured Cells, Lasers in the Life Science 1(4), 299 (1987)
  15. A. A. Khan and M. Kasha, The Discovery of the Chemical Evolution of Singlet Oxygen, International J. of Quantum Chem. XXXIX, 251 (1991)
  16. T. J. Dougherty, C. J. Gomer, and K. R. Weishaupt, Energetics and Effeciency of Photoinactivation of Murine Tumor Cells Containing Hematoporphyrin, Cancer Research 36, 2330 (1976)