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Localization of luminescent inhomogeneities in turbid media with spatially resolved measurements of cw diffuse luminescence emittance

机译:通过对CW漫射发光发射率的空间分辨测量来确定混浊介质中的发光不均匀性

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摘要

We present a steady-state method for localizing a source of luminescence (i.e., fluorescence or phosphorescence) buried in a semi-infinite turbid medium with unknown optical properties. A diffusion theory expression describing the emittance of an isotropic point source is fit to spatially resolved surface measurements of the diffuse emittance from the luminescent source. The technique reports the location of the center of a 6.0-mm-diameter, fluorophore-containing spherical bulb embedded in a liquid phantom with an accuracy of 1.0 mm or better for source depths as great as 40.0 mm. Monte Carlo data are analyzed to investigate the range and the possible sources of error in the reconstructed source depth. (C) 1998 Optical Society of America. [References: 41]
机译:我们提出了一种稳态方法,用于定位埋在具有未知光学特性的半无限浑浊介质中的发光源(即荧光或磷光)。描述各向同性点源的发射率的扩散理论表达式适合于空间解析的来自发光源的发射率的表面测量。该技术报告了直径为6.0毫米的含荧光团球形灯泡的中心位置,该球形灯泡嵌入液体体模中,对于40.0毫米以下的光源深度,精度为1.0毫米或更高。分析了蒙特卡洛数据,以研究重构源深度的范围和可能的误差源。 (C)1998年美国眼镜学会。 [参考:41]

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