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Model-based analysis of reflectance and fluorescence spectra for in vivo detection of cervical dysplasia and cancer

机译:基于模型的反射率和荧光光谱分析用于体内检测宫颈发育不良和癌症

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摘要

Development, validation, and implementation of an analytical model to extract biologically and diagnostically relevant parameters from measured cervical tissue reflectance and fluorescence spectra are presented. Monte Carlo simulations of tissue reflectance are used to determine the relative contribution of the signal from the epithelium and stroma. The results indicate that the clinical probe used collects a majority of its reflectance signal from the stroma; therefore, a one-layer analytical model of reflectance is used. Two analytical approaches to calculate reflectance spectra are compared to Monte Carlo simulations, and a diffusion theory-based model is implemented. The model is validated by fitting spectra generated from Monte Carlo simulations and comparing the input and output parameters. Median agreement between extracted optical properties and input parameters is 10.6%. The reflectance model is used together with an analytical model of tissue fluorescence to extract optical properties and fluorophore concentrations from 748 clinical measurements of cervical tissue. A diagnostic algorithm based on these extracted parameters is developed and evaluated using cross-validation. The sensitivity/specificity of this algorithm relative to the gold standard of histopathology per measurement are 85/51%; this is comparable to accuracy reported in other studies of optical technologies for detection of cervical cancer and its precursors.
机译:介绍了开发,验证和实施分析模型的方法,该模型可从测量的宫颈组织反射率和荧光光谱中提取生物学和诊断相关的参数。组织反射率的蒙特卡洛模拟用于确定来自上皮和基质的信号的相对贡献。结果表明,所使用的临床探针从基质中收集了大部分反射信号。因此,使用了一层反射率分析模型。将两种计算反射光谱的分析方法与蒙特卡洛模拟进行了比较,并实现了基于扩散理论的模型。通过拟合从蒙特卡洛模拟生成的光谱并比较输入和输出参数来验证模型。提取的光学性质和输入参数之间的中位数一致性为10.6%。反射模型与组织荧光分析模型一起使用,可以从748个宫颈组织临床测量结果中提取光学特性和荧光团浓度。开发了基于这些提取参数的诊断算法,并使用交叉验证进行了评估。相对于每次测量的组织病理学金标准,该算法的灵敏度/特异性为85/51%;这可与其他光学技术检测宫颈癌及其前体中报道的准确性相媲美。

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