Deng Zhichao, Wang Jin, Ye Qing, Sun Tengqian, Zhou Wenyuan, Mei Jianchun, Zhang Chunping, Tian Jianguo
Nankai University, Key Laboratory of Weak Light Nonlinear Photonics, Ministry of Education, TEDA Applied Physics School and School of Physics, Tianjin 300071, China.
Nankai University, Advanced Technology Institute, Tianjin 300071, China.
J Biomed Opt. 2016 Jan;21(1):15003. doi: 10.1117/1.JBO.21.1.015003.
The complex refractive index dispersion (CRID), which contains the information on the refractive index dispersion and extinction coefficient spectra, is an important optical parameter of biotissue. However, it is hard to perform the CRID measurement on biotissues due to their high scattering property. Continuous CRID measurement based on internal reflection (CCRIDM-IR) is introduced. By using a lab-made apparatus, internal reflectance spectra of biotissue samples at multiple incident angles were detected, from which the continuous CRIDs were calculated based on the Fresnel formula. Results showed that in 400- to 750-nm range, hemoglobin solution has complicated dispersion and extinction coefficient spectra, while other biotissues have normal dispersion properties, and their extinction coefficients do not vary much with different wavelengths. The normal dispersion can be accurately described by several coefficients of dispersion equations (Cauchy equation, Cornu equation, and Conrady equation). To our knowledge, this is the first time that the continuous CRID of scattering biotissue over a continuous spectral region is measured, and we hereby have proven that CCRIDM-IR is a good method for continuous CRID research of biotissue.
复折射率色散(CRID)包含折射率色散和消光系数光谱的信息,是生物组织的一个重要光学参数。然而,由于生物组织具有高散射特性,很难对其进行CRID测量。本文介绍了基于内反射的连续CRID测量方法(CCRIDM-IR)。利用自制装置,检测了生物组织样品在多个入射角下的内反射光谱,并根据菲涅耳公式计算出连续的CRID。结果表明,在400-750nm范围内,血红蛋白溶液具有复杂的色散和消光系数光谱,而其他生物组织具有正常的色散特性,其消光系数随波长变化不大。正常色散可以用几个色散方程(柯西方程、科努方程和康拉迪方程)的系数准确描述。据我们所知,这是首次在连续光谱区域测量散射生物组织的连续CRID,并且我们在此证明了CCRIDM-IR是研究生物组织连续CRID的一种好方法。