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Fluorescence Spectroscopy Study of Protoporphyrin IX in Optical Tissue Simulating Liquid Phantoms

机译:光学组织模拟液体幻影中原卟啉IX的荧光光谱研究

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摘要

Fluorescence spectroscopy has been extensively investigated for disease diagnosis. In this framework, optical tissue phantoms are widely used for validating the biomedical device system in a laboratory environment outside of clinical procedures. Moreover, it is fundamental to consider that there are several scattering components and chromophores inside biological tissues and the interplay between scattering and absorption may result in a distortion of the emitted fluorescent signal. In this work, the photophysical behaviour of a set of liquid, tissue-like phantoms containing different compositions was analysed: phosphate buffer saline (PBS) was used as the background medium, low fat milk as a scatterer, Indian ink as an absorber and protoporphyrin IX (PpIX) dissolved in dimethyl formamide (DMF) as a fluorophore. We examined the collected data in terms of the impact of surfactant Tween-20 on the background medium, scattering effects and combination of scattering and absorption within a luminescent body on PpIX. The results indicated that the intrinsic emission peaks are red shifted by the scattering particles or surfactant, whilst the scattering agent and the absorbent can alter the emission intensity substantially. We corroborated that phantoms containing higher surfactant content (>0.5% Tween 20) are essential to prepare stable aqueous phantoms.
机译:荧光光谱已被广泛研究用于疾病诊断。在这种框架下,光学组织体模被广泛用于在临床程序之外的实验室环境中验证生物医学设备系统。此外,基本要考虑的是,生物组织内部存在多种散射成分和生色团,并且散射与吸收之间的相互作用可能导致发射的荧光信号失真。在这项工作中,分析了一组包含不同成分的液体,组织状体模的光物理行为:使用磷酸盐缓冲盐水(PBS)作为背景介质,使用低脂牛奶作为散射体,使用印度墨水作为吸收剂,并使用原卟啉IX(PpIX)溶解在二甲基甲酰胺(DMF)中作为荧光团。我们根据表面活性剂吐温20对本底介质的影响,散射效应以及PpIX发光体内散射和吸收的组合来检查收集的数据。结果表明,本征发射峰被散射颗粒或表面活性剂红移,而散射剂和吸收剂可以显着改变发射强度。我们证实了含有较高表面活性剂含量(> 0.5%Tween 20)的体模对于制备稳定的水性体模必不可少。

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