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Analysis of multiple scattering suppression using structured laser illumination planar imaging in scattering and fluorescing media

机译:在散射和发荧光介质中使用结构化激光照明平面成像分析多重散射抑制

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摘要

Abstract: The accuracy, precision and limitations of the imaging technique named Structured Laser Illumination Planar Imaging (SLIPI) have been investigated. SLIPI, which allows multiply scattered light to be diminished, has previously demonstrated improvements in image quality and contrast for spray imaging. In the current study the method is applied to a controlled confined environment consisting of a mixture of water and monodisperse polystyrene microspheres. Elastic scattering and fluorescence are studied and the results obtained when probing different particle concentrations and diameters conclusively show the advantages of SLIPI for imaging within moderately turbid media. Although the technique presents both good repeatability and agreement with the Beer-Lambert law, discrepancies in its performance were, however, discovered. Photons undergoing scattering without changing their incident trajectory cannot be discriminated and, owing to differences in scattering phase functions, probing larger particles reduces the suppression of multiply scattered light. However, in terms of visibility such behavior is beneficial as it allows denser media to be probed. It is further demonstrated that the suppression of diffuse light performs equally well regardless of whether photons propagate along the incident direction or towards the camera. In addition, this filtering process acts independently on the spatial distribution of the multiply scattered light but is limited by the finite dynamic range and unavoidable signal noise of the camera.
机译:摘要:研究了称为结构化激光照明平面成像(SLIPI)的成像技术的准确性,精度和局限性。 SLIPI允许减少散射光的倍增,先前已证明可改善喷雾成像的图像质量和对比度。在当前的研究中,该方法被应用于由水和单分散聚苯乙烯微球的混合物组成的受控密闭环境。研究了弹性散射和荧光,探测不同颗粒浓度和直径时获得的结果最终显示了SLIPI在中等浊度介质中成像的优势。尽管该技术具有良好的可重复性,并且符合Beer-Lambert法则,但发现其性能存在差异。不能区分经历散射而不改变其入射轨迹的光子,并且由于散射相位函数的差异,探测较大的粒子会降低对多重散射光的抑制。但是,就可见性而言,这种行为是有益的,因为它允许探测更密集的媒体。进一步证明,不管光子是沿着入射方向传播还是朝着相机传播,散射光的抑制效果都一样好。另外,该滤波过程独立地作用于多重散射光的空间分布,但是受到有限的动态范围和摄像机不可避免的信号噪声的限制。

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