Zhu Dan, Lu Wei, Zeng Shaoqun, Luo Qingming
Huazhong University of Science and Technology, Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics, Wuhan, 430074, China.
J Biomed Opt. 2007 Nov-Dec;12(6):064004. doi: 10.1117/1.2815691.
A Monte Carlo algorithm is applied to simulate the measurements of a sample with glass slides sandwiched between the double integrating sphere (DIS) setup. The effects caused by various parameters, such as the sample port of integrating sphere, thicknesses, and optical properties of the sample, on light losses and optical properties estimated by the inverse adding-doubling method (IAD) have been investigated. The results show that the light loss greatly increases the estimated error of absorption coefficient and slightly affects the estimated scattering coefficient. When the increase of apparent absorption of the sample induced by the light loss is 59%, the relative error of the scattering coefficient is less than 2% and that of the absorption coefficient reaches 28%. Enhancing the sample port diameter or decreasing the thickness of the sample can reduce the error effectively, and the effect of the former is much greater than that of the latter. In addition, the IAD method is proved to be valid for estimating the optical properties of a highly scattering or highly absorbing sample. This study can not only evaluate the error of optical properties estimation, but also provide optimal ways for the design of DIS and a scheme for acquiring accurate optical properties of tissue.
采用蒙特卡罗算法模拟了在双积分球(DIS)装置中夹有载玻片的样品的测量过程。研究了积分球样品端口、样品厚度和光学特性等各种参数对逆倍增法(IAD)估计的光损失和光学特性的影响。结果表明,光损失极大地增加了吸收系数的估计误差,对散射系数的估计影响较小。当光损失引起的样品表观吸收增加59%时,散射系数的相对误差小于2%,吸收系数的相对误差达到28%。增大样品端口直径或减小样品厚度可有效降低误差,前者的效果远大于后者。此外,证明IAD方法对于估计高散射或高吸收样品的光学特性是有效的。本研究不仅可以评估光学特性估计的误差,还可以为DIS的设计提供优化方法以及获取组织准确光学特性的方案。