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Study on mechanism of ultrasonic fluorescence modulation in light scattering medium based on diffusion approximation with varying refractive index

机译:基于变折射率扩散近似的光散射介质中超声荧光调制机理的研究

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摘要

In this study, we propose a model to describe the mechanism of ultrasonic fluorescence modulation based on the application of a modified diffusion approximation, which is derived from the radiative transfer equation with consideration of the varying refractive index. The model was evaluated by computation with finite element method (FEM) to simulate the physical phenomena of our previous experiments. The simulation shows that the measured power of the modulated fluorescence signal at the boundary of 40-mm-thick light scattering medium (scattering coefficient and anisotropy factor of 1. 36mm ~(-1) and 0.67, respectively) with the fluorophore located at the center was 10 ~(-20) of the incident laser power. The analysis based on the simulation results indicates the significant property of the modulation in which the modulated signal is combination including two processes generated from the variation of the refractive index and fluorophore concentration (the contributions of these are equivalent), whereas the contribution of the variation of the scattering coefficient is negligibly small. The profile of the fluorescence image and the characteristics of the quadratic relationship between the modulated intensity signal and the sound pressure are consistent with our previous experimental results.
机译:在这项研究中,我们提出了一个模型,用于描述基于修正扩散近似的应用的超声荧光调制机制,该修正近似是从辐射传递方程考虑到折射率的变化得出的。通过使用有限元方法(FEM)进行计算来评估该模型,以模拟我们先前实验的物理现象。仿真表明,调制荧光信号在厚度为40 mm的光散射介质(散射系数和各向异性系数分别为1. 36mm〜(-1)和0.67)的边界处的测量功率,荧光团位于中心是入射激光功率的10〜(-20)。基于模拟结果的分析表明调制的显着特性,其中调制信号是组合的,包括从折射率和荧光团浓度的变化产生的两个过程(它们的贡献是等效的),而变化的贡献散射系数的极小可忽略不计。荧光图像的轮廓以及调制强度信号和声压之间的二次关系特征与我们先前的实验结果一致。

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