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首页> 外文期刊>Applied Optics >Two-dimensional quantitative photoacoustic image reconstruction of absorption distributions in scattering media by use of a simple iterative method
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Two-dimensional quantitative photoacoustic image reconstruction of absorption distributions in scattering media by use of a simple iterative method

机译:使用简单迭代方法的二维定量光声图像重建散射介质中的吸收分布

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Photoacoustic imaging is a noninvasive biomedical imaging modality for visualizing the internal structure and function of soft tissues. Conventionally, an image proportional to the absorbed optical energy is reconstructed from measurements of light-induced acoustic emissions. We describe a simple iterative algorithm to recover the distribution of optical absorption coefficients from the image of the absorbed optical energy. The algorithm, which incorporates a diffusion-based finite-element model of light transport, converges quickly onto an accurate estimate of the distribution of absolute absorption coefficients. Two-dimensional examples with physiologically realistic optical properties are shown. The ability to recover optical properties (which directly reflect tissue physiology) could enhance photoacoustic imaging techniques, particularly methods based on spectroscopic analysis of chromophores.
机译:光声成像是一种非侵入性的生物医学成像方法,用于可视化软组织的内部结构和功能。常规地,从光致声发射的测量结果重建与吸收的光能成比例的图像。我们描述了一种简单的迭代算法,可以从吸收的光能图像中恢复光吸收系数的分布。该算法结合了基于扩散的光传输有限元模型,可快速收敛到绝对吸收系数分布的准确估计上。显示了具有生理逼真的光学特性的二维示例。恢复光学特性(直接反映组织生理)的能力可以增强光声成像技术,特别是基于发色团光谱分析的方法。

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