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Development of thin skin mimicking bilayer solid tissue phantoms for optical spectroscopic studies

机译:模仿双层固体实体模型的薄皮肤的光谱学研究开发

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摘要

In vivo spectroscopic measurements have the proven potential to provide important insight about the changes in tissue during the development of malignancies and thus help to diagnose tissue pathologies. Extraction of intrinsic data in the presence of varying amounts of scatterers and absorbers offers great challenges in the development of such techniques to the clinical level. Fabrication of optical phantoms, tailored to the biochemical as well as morphological features of the target tissue, can help to generate a spectral database for a given optical spectral measurement system. Such databases, along with appropriate pattern matching algorithms, could be integrated with in vivo measurements for any desired quantitative analysis of the target tissue. This paper addresses the fabrication of such soft, photo stable, thin bilayer phantoms, mimicking skin tissue in layer dimensions and optical properties. The performance evaluation of the fabricated set of phantoms is carried out using a portable fluorescence spectral measurement system. The alterations in flavin adenine dinucleotide (FAD)–a tissue fluorophore that provides important information about dysplastic progressions in tissues associated with cancer development based on changes in emission spectra–fluorescence with varied concentrations of absorbers and scatterers present in the phantom are analyzed and the results are presented. Alterations in the emission intensity, shift in emission wavelength and broadening of the emission spectrum were found to be potential markers in the assessment of biochemical changes that occur during the progression of dysplasia.
机译:体内光谱测量具有被证明的潜力,可以提供有关恶性肿瘤发展过程中组织变化的重要见解,从而有助于诊断组织病理学。在存在数量不一的散射体和吸收体的情况下提取固有数据为将此类技术发展到临床水平提出了巨大挑战。根据目标组织的生化特征和形态特征量身定制的光学体模可以帮助为给定的光谱测量系统生成光谱数据库。此类数据库以及适当的模式匹配算法可以与体内测量结果集成在一起,以对目标组织进行任何所需的定量分析。本文探讨了这种柔软,光稳定,薄的双层体模的制造,该体模在层尺寸和光学特性上模仿了皮肤组织。使用便携式荧光光谱测量系统对制作的体模进行性能评估。黄素腺嘌呤二核苷酸(FAD)的变化–一种组织荧光团,根据发射光谱的变化提供与癌症发展相关的组织发育异常进展的重要信息–分析了幻影中存在不同浓度的吸收剂和散射剂的荧光被提出。发现发射强度的变化,发射波长的偏移和发射光谱的变宽是在发育异常过程中发生的生化变化评估中的潜在标志。

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