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Portable, Fiber-Based, Diffuse Reflection Spectroscopy (DRS) Systems for Estimating Tissue Optical Properties.

机译:便携式,基于光纤的漫反射光谱(DRs)系统,用于估算组织光学特性。

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摘要

Steady-state diffuse reflection spectroscopy is a well-studied optical technique that can provide a noninvasive and quantitative method for characterizing the absorption and scattering properties of biological tissues. Here, we compare three fiber-based diffuse reflection spectroscopy systems that were assembled to create a light-weight, portable, and robust optical spectrometer that could be easily translated for repeated and reliable use in mobile settings. The three systems were built using a broadband light source and a compact, commercially available spectrograph. We tested two different light sources and two spectrographs (manufactured by two different vendors). The assembled systems were characterized by their signal-to-noise ratios, the source-intensity drifts, and detector linearity. We quantified the performance of these instruments in extracting optical properties from diffuse reflectance spectra in tissue-mimicking liquid phantoms with well-controlled optical absorption and scattering coefficients. We show that all assembled systems were able to extract the optical absorption and scattering properties with errors less than 10%, while providing greater than ten-fold decrease in footprint and cost (relative to a previously well-characterized and widely used commercial system). Finally, we demonstrate the use of these small systems to measure optical biomarkers in vivo in a small-animal model cancer therapy study. We show that optical measurements from the simple portable system provide estimates of tumor oxygen saturation similar to those detected using the commercial system in murine tumor models of head and neck cancer.
机译:稳态扩散反射光谱学是一种经过充分研究的光学技术,可以提供表征生物组织吸收和散射特性的非侵入性和定量方法。在这里,我们比较了三个基于光纤的漫反射光谱系统,这些系统组装在一起以创建轻巧,便携式且坚固耐用的光谱仪,可以轻松转换该光谱仪,以便在移动环境中重复使用和可靠使用。这三个系统是使用宽带光源和紧凑的市售光谱仪构建的。我们测试了两个不同的光源和两个光谱仪(由两个不同的供应商制造)。组装后的系统的特征在于其信噪比,源强度漂移和检测器线性度。我们量化了这些仪器从具有良好控制的光吸收和散射系数的模仿组织的体模中的漫反射光谱中提取光学特性的性能。我们表明,所有组装的系统都能够提取光学吸收和散射特性,误差小于10%,同时占地面积和成本降低了10倍以上(相对于以前特征明确且广泛使用的商业系统)。最后,我们在小型动物模型癌症治疗研究中证明了这些小型系统在体内测量光学生物标记物的用途。我们显示,从简单的便携式系统进行的光学测量可提供类似于在头颈癌的鼠类肿瘤模型中使用商业系统检测到的肿瘤氧饱和度的估计值。

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