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Separately reconstructing the structural and functional parameters of a fluorescent inclusion embedded in a turbid medium

机译:分别重建混浊介质中嵌入的荧光夹杂物的结构和功能参数

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摘要

We report a novel imaging technique for fluorescence diffuse optical tomography (FDOT). Unlike conventional FDOT, this technique separates the imaging procedure into two steps to respectively reconstruct the structural information (such as the center position and the radius), and the functional information (such as the fluorophore concentration and/or lifetime) of a fluorescing target embedded in a turbid medium. The structural parameters of the target were estimated from the amplitude ratio and phase difference of fluorescence signals received at different detectors, because the amplitude ratio and phase difference were found independent of, or weakly related to, the functional parameters. Based on the estimated structural parameters, a dual-zone mesh technique was utilized to reconstruct the fluorophore concentration. Results of simulations and phantom experiments showed that the structural parameters could be accurately recovered, without knowing the functional information, and that the reconstruction accuracy of the functional parameter was greater than 80%.
机译:我们报告了一种新型的荧光扩散光学层析成像技术(FDOT)的成像技术。与常规FDOT不同,该技术将成像过程分为两个步骤,分别重构嵌入的荧光目标的结构信息(例如中心位置和半径)和功能信息(例如荧光团浓度和/或寿命)。在浑浊的介质中。根据在不同检测器处接收到的荧光信号的振幅比和相位差来估算目标的结构参数,因为发现振幅比和相位差与功能参数无关或微弱地相关。基于估计的结构参数,采用双区网格技术重建荧光团浓度。仿真和幻像实验结果表明,在不了解功能信息的情况下,可以准确地恢复结构参数,并且该功能参数的重构精度大于80%。

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