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Imaging with diffusing light: an experimental study of the effect of background optical properties

机译:散射光成像:背景光学特性影响的实验研究

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摘要

The overall image quality and diagnostic potential of time-resolved transmittance imaging depend on sensitivity to optical contrast, capacity to discriminate scattering from absorption contributions, and spatial resolution. We have investigated experimentally the effects of the optical properties of the background medium on the overall image quality of optical imaging based on fitting the experimental data to the solution of the diffusion equation and on time gating. Images were acquired from phantoms with different background optical properties, while the optical contrast between inhomogeneities and background is kept constant. Data were collected every 0.2 cm over a 6 cm x 6 cm area from realistic tissue phantoms containing cylindrical inhomogeneities (1 cm high and 1 cm in diameter) embedded in a 5-cm-thick turbid slab. The optical coefficients of the background were varied in the ranges of 5-15 cm(-1) for transport scattering and 0.02-0.08 cm(-1) for absorption. The optical contrast for the inclusions was kept at values of -50% and +50% for the scattering and -75% and +300% for the absorption. The results show that both high scattering and high absorption are beneficial. (C) 1998 Optical Society of America. [References: 32]
机译:时间分辨透射成像的整体图像质量和诊断潜力取决于对光学对比度的敏感性,区分散射与吸收贡献的能力以及空间分辨率。我们通过将实验数据拟合到扩散方程的解和时间选通上,通过实验研究了背景介质的光学特性对光学成像整体图像质量的影响。从具有不同背景光学特性的体模中获取图像,而异质性和背景之间的光学对比度保持恒定。从每6 cm x 6 cm的区域中每0.2 cm收集数据,这些现实的人体模型包含嵌入5 cm厚的混浊平板中的圆柱形不均匀性(高1 cm,直径1 cm)。背景的光学系数在5-15 cm(-1)的范围内进行传输散射,在0.02-0.08 cm(-1)的范围内变化进行吸收。夹杂物的光学对比度对于散射保持在-50%和+ 50%,对于吸收保持在-75%和+ 300%。结果表明,高散射和高吸收都是有益的。 (C)1998年美国眼镜学会。 [参考:32]

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