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用逆荧光蒙特卡罗模型对混浊体模和鼠肿瘤模型中与代谢相关的荧光团浓度进行实验验证。

Experimental validation of an inverse fluorescence Monte Carlo model to extract concentrations of metabolically relevant fluorophores from turbid phantoms and a murine tumor model.

机构信息

Xi'an Jiaotong University, The Key Laboratory of Biomedical Information Engineering of Ministry of Education, and Institute of Biomedical Analytical Technology and Instrumentation, School of Life Science and Technology, No. 28 Xianning West Road, Xi'an 710049, China.

出版信息

J Biomed Opt. 2012 Jul;17(7):077012. doi: 10.1117/1.JBO.17.7.077012.

Abstract

An inverse Monte Carlo based model has been developed to extract intrinsic fluorescence from turbid media. The goal of this work was to experimentally validate the model to extract intrinsic fluorescence of three biologically meaningful fluorophores related to metabolism from turbid media containing absorbers and scatterers. Experimental studies were first carried out on tissue-mimicking phantoms that contained individual fluorophores and their combinations, across multiple absorption, scattering, and fluorophore concentrations. The model was then tested in a murine tumor model to determine both the kinetics of fluorophore uptake as well as overall tissue fluorophore concentration through extraction of the intrinsic fluorescence of an exogenous contrast agent that reports on glucose uptake. Results show the model can be used to recover the true intrinsic fluorescence spectrum with high accuracy (R(2)=0.988) as well as accurately compute fluorophore concentration in both single and multiple fluorophores phantoms when appropriate calibration standards are available. In the murine tumor, the model-corrected intrinsic fluorescence could be used to differentiate drug dose injections between different groups. A strong linear correlation was observed between the extracted intrinsic fluorescence intensity and injected drug dose, compared with the distorted turbid tissue fluorescence.

摘要

已经开发了一种基于逆蒙特卡罗的模型,用于从混浊介质中提取固有荧光。这项工作的目的是通过实验验证该模型,以从含有吸收剂和散射体的混浊介质中提取与代谢相关的三种有意义的生物荧光团的固有荧光。首先在组织模拟体上进行了实验研究,这些模拟体包含单个荧光团及其组合,涉及多种吸收、散射和荧光团浓度。然后,该模型在小鼠肿瘤模型中进行了测试,以确定通过提取报告葡萄糖摄取的外源对比剂的固有荧光来确定荧光团摄取的动力学以及整个组织荧光团浓度。结果表明,该模型可以高精度地(R(2)= 0.988)恢复真实的固有荧光光谱,并且当存在适当的校准标准时,它可以准确地计算单个和多个荧光团模拟体中的荧光团浓度。在小鼠肿瘤中,模型校正后的固有荧光可用于区分不同组的药物剂量注射。与混浊组织荧光相比,提取的固有荧光强度与注射药物剂量之间存在很强的线性相关性。

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