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Optical properties of PlatSil SiliGlass tissue-mimicking phantoms

机译:Platsil Siliglass组织 - 模拟幻像的光学性质

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摘要

In this work, we revise the preparation procedure and conduct an in depth characterization of optical properties for the recently proposed silicone-based tissue-mimicking optical phantoms in the spectral range from 475 to 925 nm. The optical properties are characterized in terms of refractive index and its temperature dependence, absorption and reduced scattering coefficients and scattering phase function related quantifiers. The scattering phase function and related quantifiers of the optical phantoms are first assessed within the framework of the Mie theory by using the measured refractive index of SiliGlass and size distribution of the hollow silica spherical particles that serve as scatterers. A set of purely absorbing optical phantoms in cuvettes is used to evaluate the linearity of the absorption coefficient with respect to the concentration of black pigment that serves as the absorber. Finally, the optical properties in terms of the absorption and reduced scattering coefficients and the subdiffusive scattering phase function quantifier γ are estimated for a subset of phantoms from spatially resolved reflectance using deep learning aided inverse models. To this end, an optical fiber probe with six linearly arranged optical fibers is used to collect the backscattered light at small and large distances from the source fiber. The underlying light propagation modeling is based on the stochastic Monte Carlo method that accounts for all the details of the optical fiber probe.
机译:在这项工作中,我们修改了制备程序,并在光谱范围内的最近提出的基于硅氧烷基组织模拟光学模型的光学性质的深度表征的深度表征。光学性质的特征在于折射率及其温度依赖性,吸收和降低的散射系数和散射相函数相关量子。首先通过使用用作散射体的中空硅子球形颗粒的测量折射率和用作散射体的中空二氧化硅球形颗粒的测量折射率在MIE理论的框架内评估光学模谱的散射相函数和相关量词。在比色皿中的一组纯度吸收光学幻影用于评估吸收系数相对于作为吸收剂用作吸收剂的浓度的线性。最后,在吸收和减小的散射系数方面和亚邻散射阶段函数量化γ的光学性质估计使用深度学习辅助反向模型来估计来自空间分辨反射的幽灵子集。为此,使用具有六个线性布置的光纤的光纤探针用于从源极光纤的小而大的距离处收集后散射光。底层光传播建模基于随机蒙特卡罗方法,其考虑了光纤探头的所有细节。

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