Optical properties of human colon tissues in the 350-2500 nm spectral range

被引:48
|
作者
Bashkatov, A. N. [1 ]
Genina, E. A. [1 ]
Kochubey, V. I. [1 ]
Rubtsov, V. S. [2 ]
Kolesnikova, E. A. [1 ]
Tuchin, V. V. [1 ,3 ,4 ]
机构
[1] NG Chernyshevsky Saratov State Univ, Saratov 410012, Russia
[2] VI Razumovsky Saratov State Med Univ, Saratov 410012, Russia
[3] Russian Acad Sci, Inst Precis Mech & Control, Saratov 410028, Russia
[4] Univ Oulu, Oulu 90014, Finland
基金
俄罗斯科学基金会;
关键词
integrating sphere spectrophotometry; inverse Monte Carlo method; mucous membrane; submucous membrane; absorption coefficient; scattering coefficient; reduced scattering coefficient; scattering anisotropy factor; BIOLOGICAL TISSUES; LIGHT-SCATTERING; ABSORBING MEDIUM; SOFT-TISSUE; IN-VITRO; VIVO; SKIN; REFLECTANCE; ABSORPTION; PARTICLE;
D O I
10.1070/QE2014v044n08ABEH015613
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We present the optical characteristics of the mucosa and submucosa of human colon tissue. The experiments are performed in vitro using a LAMBDA 950 spectrophotometer in the 350-2500 nm spectral range. The absorption and scattering coefficients and the scattering anisotropy factor are calculated based on the measured diffuse reflectance and total and collimated transmittance spectra using the inverse Monte Carlo method.
引用
收藏
页码:779 / 784
页数:6
相关论文
共 50 条
  • [31] Bulk Optical Properties of Potato Flesh in the 500-1900 nm Range
    Lopez-Maestresalas, Ainara
    Aernouts, Ben
    Van Beers, Robbe
    Arazuri, Silvia
    Jaren, Carmen
    De Baerdemaeker, Josse
    Saeys, Wouter
    FOOD AND BIOPROCESS TECHNOLOGY, 2016, 9 (03) : 463 - 470
  • [32] In Vivo Measurement of Optical Properties of Human Skin for 450-800nm and 950-1600nm Wavelengths
    Kono, Takahiro
    Yamada, Jun
    INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2019, 40 (05)
  • [33] Optical properties of native and coagulated lamb brain tissues in vitro in the visible and near-infrared spectral range
    Ozer, Korhan
    Bozkulak, Ozguncem
    Tabakoglu, Hasim Ozgur
    Kurt, Adnan
    Gulsoy, Murat
    OPTICAL INTERACTIONS WITH TISSUE AND CELLS XVII, 2006, 6084
  • [34] The optical properties of blood in the near infrared spectral range
    Yaroslavsky, AN
    Yaroslavsky, IV
    Goldbach, T
    Schwarzmaier, HJ
    OPTICAL DIAGNOSTICS OF LIVING CELLS AND BIOFLUIDS, PROCEEDINGS OF, 1996, 2678 : 314 - 324
  • [35] Optical properties of mice skull bone in the 455-to 705-nm range
    Haleh, Soleimanzad
    Hirac, Gurden
    Frederic, Pain
    JOURNAL OF BIOMEDICAL OPTICS, 2017, 22 (01)
  • [36] Effect of a plant growth regulator on optical properties of kiwifruit during growth in wavelength range of 950-1650 nm
    Liu, Dayang
    Guo, Wenchuan
    Li, Qianqian
    Xie, Dandan
    POSTHARVEST BIOLOGY AND TECHNOLOGY, 2019, 156
  • [37] Measurement of absorption and reduced scattering coefficients in Asian human epidermis, dermis, and subcutaneous fat tissues in the 400-to 1100-nm wavelength range for optical penetration depth and energy deposition analysis
    Shimojo, Yu
    Nishimura, Takahiro
    Hazama, Hisanao
    Ozawa, Toshiyuki
    Awazu, Kunio
    JOURNAL OF BIOMEDICAL OPTICS, 2020, 25 (04)
  • [38] Polarimetric study of leukemia human peripheral blood smears in 400-800 nm spectral range
    Aziz, Tariq
    Firdous, Shamaraz
    Khan, Mohammad Aslam
    Ikram, Masroor
    Rahman, Tunzeel Ur
    OPTIK, 2013, 124 (17): : 2936 - 2942
  • [39] In Vivo Measurement of Optical Properties of Human Skin for 450–800 nm and 950–1600 nm Wavelengths
    Takahiro Kono
    Jun Yamada
    International Journal of Thermophysics, 2019, 40
  • [40] Human tissue color as viewed in high dynamic range optical spectral transmission measurements
    Petrov, Georgi I.
    Doronin, Alexander
    Whelan, Harry T.
    Meglinski, Igor
    Yakovlev, Vladislav V.
    BIOMEDICAL OPTICS EXPRESS, 2012, 3 (09): : 2154 - 2161