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Diffuse reflectance spectroscopy for determination of optical properties and chromophore concentrations of mice internal organs in the range of 350 nm to 1860 nm

机译:弥漫性反射光谱法测定光学性质和发色团浓度的小鼠内脏,在350nm至1860nm的范围内

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The development of photomedical modalities for diagnostics and treatment has created a need for knowledge of the optical properties of the targeted biological tissues. These properties are essential to plan certain procedures, since they determine the light absorption, propagation and penetration in tissues. One way to measure these properties is based on diffuse reflectance spectroscopy (DRS). DRS can provide light absorption and scattering coefficients for each wavelength through a non-invasive, fast and in situ interrogation, and thereby tissue biochemical information. In this study, reflectance measurements of ex vivo mice organs were investigated in a wavelength range between 350 and 1860 nm. To the best of our knowledge, this range is broader than previous studies reported in the literature and is useful to study additional chromophores with absorption in the extended wavelength range. Also, it may provide a more accurate concentration of tissue chromophores when fitting the reflectance spectrum in this extended range. In order to extract these concentrations, optical properties were calculated in a wide spectral range through a fitting routine based on an inverse Monte-Carlo look-up table model. Measurements variability was assessed by calculating the Pearson correlation coefficients between each pair of measured spectra of the same type of organ.
机译:用于诊断和治疗的光学模型的发展创造了需要了解靶向生物组织的光学性质的需要。这些属性对于规划某些程序至关重要,因为它们决定了组织中的光吸收,繁殖和渗透。测量这些属性的一种方法是基于漫反射光谱(DRS)。 DRS可以通过非侵入性,快速和原位询问,从而为每个波长提供光吸收和散射系数,从而为组织生物化学信息提供。在该研究中,在350至1860nm之间的波长范围内研究了前体内小鼠器官的反射率测量。据我们所知,该范围比以往的研究中的文献中报告的更广泛,并且在延伸波长范围内吸收额外的发色团是有用的。而且,当在该延伸范围内拟合反射光谱时,它可以提供更准确的组织发色团浓度。为了提取这些浓度,通过基于逆蒙特卡罗查找表模型,通过拟合例程计算光学性质。通过计算相同类型器官的每对测量光谱之间的Pearson相关系数来评估测量变异性。

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