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首页> 外文期刊>Biomedical Optics Express >Semi-empirical model of the effect of scattering on single fiber fluorescence intensity measured on a turbid medium
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Semi-empirical model of the effect of scattering on single fiber fluorescence intensity measured on a turbid medium

机译:在混浊介质上测得的散射对单纤维荧光强度影响的半经验模型

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摘要

Quantitative determination of fluorophore content from fluorescence measurements in turbid media, such as tissue, is complicated by the influence of scattering properties on the collected signal. This study utilizes a Monte Carlo model to characterize the relationship between the fluorescence intensity collected by a single fiber optic probe (FSF) and the scattering properties. Simulations investigate a wide range of biologically relevant scattering properties specified independently at excitation (λx) and emission (λm) wavelengths, including reduced scattering coefficients in the range μ′s(λx) ∈ [0.1 – 8]mm?1 and μ′s(λm) ∈ [0.25 – 1] × μ′s(λx). Investigated scattering phase functions (P(θ)) include both Henyey-Greenstein and Modified Henyey-Greenstein forms, and a wide range of fiber diameters (df ∈ [0.2 – 1.0] mm) was simulated. A semi-empirical model is developed to estimate the collected FSF as the product of an effective sampling volume, and the effective excitation fluence and the effective escape probability within the effective sampling volume. The model accurately estimates FSF intensities (r=0.999) over the investigated range of μ′s(λx) and μ′s(λm), is insensitive to the form of the P(θ), and provides novel insight into a dimensionless relationship linking FSF measured by different df.
机译:根据散射特性对收集信号的影响,在混浊介质(例如组织)中通过荧光测量来定量测定荧光团含量非常复杂。这项研究利用蒙特卡洛模型来表征单个光纤探针(FSF)收集的荧光强度与散射特性之间的关系。仿真研究了在激发(λx)和发射(λm)波长下独立指定的广泛的生物学相关散射特性,包括在μ's(λx)∈[0.1 – 8] mm?1和μ's范围内减小的散射系数(λm)∈[0.25 – 1]×μ's(λx)。研究的散射相位函数(P(θ))既包括Henyey-Greenstein形式,也包括改良的Henyey-Greenstein形式,并且模拟了大范围的纤维直径(df∈[0.2 – 1.0] mm)。建立了一个半经验模型,以估算收集到的FSF作为有效采样量以及有效采样量之内的有效激发通量和有效逸出概率的乘积。该模型可以在研究的μ's(λx)和μ's(λm)范围内准确估算FSF强度(r = 0.999),对P(θ)的形式不敏感,并为无量纲关系提供了新颖的见解连接由不同df测量的FSF。

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