Wei Hua-jiang, Xing Da, Wu Guo-yong, Jin Ying, Gu Huai-min
Institute of Laser Life Science, South China Normal University, Guangzhou 510631, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2004 May;24(5):524-8.
A double-integrating-spheres system, basic principle of measuring technology of ray radiation, and optical model of biological tissues were used for the study. Optical properties of human normal small intestine tissue at 476.5, 488, 496.5, 514.5 and 532 nm laser and their linearly polarized laser irradiation were studied. The results of measurement showed that the total attenuation coefficient and scattering coefficient of the tissue at these wavelengths of laser and their linearly polarized laser irradiation increased with decreasing wavelengths. And obviously there was a distinction at 514.5 to 532 nm wavelength between lasers and their linearly polarized laser irradiation. Absorption coefficient of tissue at these wavelengths of laser and their linearly polarized laser irradiation increased with decreasing wavelengths. Absorption coefficient of tissue at 514.5 to 532 nm wavelength of laser was obviously decreasing, which was independent of these wavelengths of laser or their linearly polarized laser irradiation. Mean cosine of scattering of tissue at these wavelengths of laser and their linearly polarized laser irradiation also increased with decreasing wavelengths. But penetration depth of tissue at these wavelengths of laser and their linearly polarized laser irradiation also increased with increasing of wavelengths. Refractive index of tissue between these wavelengths of laser was within 1.38 to 1.48. Absorption coefficient, scattering coefficient, total attenuation coefficient, effective attenuation coefficients of tissue in Kubelka-Munk two-flux model at the same wavelength of laser and their linearly polarized laser irradiation showed no prominent distinction (P>0.01). Absorption coefficient, scattering coefficient, total attenuation coefficient, effective attenuation coefficients of tissue in Kubelka-Munk two-flux model at different wavelength of laser and their linearly polarized laser irradiation showed obvious distinction. Optical properties of tissue at 514.5 to 532 nm wavelength of laser exhibited obvious distinction.
本研究采用双积分球系统、射线辐射测量技术的基本原理以及生物组织的光学模型。研究了人正常小肠组织在476.5、488、496.5、514.5和532nm激光及其线偏振激光照射下的光学特性。测量结果表明,在这些激光波长及其线偏振激光照射下,组织的总衰减系数和散射系数随波长减小而增大。并且在514.5至532nm波长处,激光及其线偏振激光照射之间存在明显差异。在这些激光波长及其线偏振激光照射下,组织的吸收系数随波长减小而增大。在514.5至532nm激光波长处,组织的吸收系数明显降低,且与这些激光波长或其线偏振激光照射无关。在这些激光波长及其线偏振激光照射下,组织散射的平均余弦也随波长减小而增大。但在这些激光波长及其线偏振激光照射下,组织的穿透深度也随波长增加而增大。在这些激光波长之间,组织的折射率在1.38至1.48范围内。在相同激光波长及其线偏振激光照射下,组织在库贝尔卡-蒙克双通量模型中的吸收系数、散射系数、总衰减系数、有效衰减系数无显著差异(P>0.01)。在不同激光波长及其线偏振激光照射下,组织在库贝尔卡-蒙克双通量模型中的吸收系数、散射系数、总衰减系数、有效衰减系数有明显差异。在514.5至532nm激光波长处,组织的光学特性表现出明显差异。