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A Comparison of Methods for Determining Optical Properties of Thin Samples

机译:薄样品光学性能测定方法的比较

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The near-infrared (NIR) optical properties of human retinal pigmented epithelial (RPE) cells and rare earth nanopowders were studied using a double-integrating sphere setup. The Kubelka-Munk and Inverse Adding-Doubling techniques were applied to obtain absorption and scattering coefficients. These are compared with the coefficients obtained through the Representative Layer Theory described by the Dahm equation. Retinal pigmented epithelial monolayers were cultured from an ARPE19 line in thin cell culture windows, and the nanopowders were pressed into samples of varying thickness. Samples were optically characterized as a function of wavelength. A brief discussion of the shortcomings of existing techniques for computing optical properties when applied to physically thin samples is provided, followed by a comparison between the optical properties of the samples returned by the different techniques.
机译:使用双积分球设置研究了人类视网膜色素上皮细胞(RPE)和稀土纳米粉体的近红外(NIR)光学特性。使用Kubelka-Munk和逆加法技术获得吸收和散射系数。将这些与通过Dahm方程描述的代表层理论获得的系数进行比较。在薄细胞培养窗口中从ARPE19品系培养视网膜色素上皮单层,然后将纳米粉压成厚度不同的样品。将样品光学表征为波长的函数。提供了对当应用于物理上稀薄的样品时用于计算光学性质的现有技术的缺点的简要讨论,随后比较了通过不同技术返回的样品的光学性质。

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