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Extracting broadband optical properties from uniform optical phantoms using an integrating sphere and inverse adding-doubling

机译:利用集成球和逆添加加倍从均匀光学模型中提取宽带光学性质

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In tissue optics, it is important to measure the wavelength-dependent scattering, absorption and anisotropy coefficients of tissues to describe interactions of light with such turbid media. Here, we use the inverse adding-doubling (IAD) technique coupled to measurements acquired using an integrating sphere (IS). The IS system provides a method to acquire highly accurate measurements for the total reflectance and transmittance for thin turbid samples. The IAD is an iterative technique that uses a numerical solver to radiative transport capable of fitting a set of measured reflectance and transmittance values and thereby yield optical absorption and reduced scattering coefficients of thin samples. We test the validity and performance of the IS/IAD system by obtaining measurements on a set of liquid phantoms prepared with controlled absorption and scattering properties. We explore sources of errors and discuss how the the accuracy these techniques may be improved. We demonstrate that the IAD/IS technique allows the accurate recovery of chromophore spectral properties.
机译:在组织光学中,重要的是测量组织的波长依赖性散射,吸收和各向异性系数,以描述具有这种混浊介质的光的相互作用。在这里,我们使用耦合到使用集成球(是)获取的测量的逆添加加倍(IAD)技术。该系统提供了一种用于获取高精度测量的方法,用于薄浑浊样本的总反射率和透射率。 IAD是一种迭代技术,其使用数值求解器来辐射传输,其能够拟合一组测量的反射率和透射率值,从而产生薄样本的光学吸收和减小的散射系数。我们通过获得具有受控吸收和散射性能的一组液体幽灵的测量来测试IS / IAD系统的有效性和性能。我们探索错误的来源,并讨论如何提高这些技术的准确性。我们证明IAD /是技术允许准确地恢复发色团光谱特性。

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