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Three-dimensional quantitative photoacoustic tomography using an adjoint radiance Monte Carlo model and gradient descent

机译:使用伴随辐射蒙特卡洛模型和梯度下降的三维定量光声层析成像

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摘要

Quantitative photoacoustic tomography aims to recover maps of the local concentrations of tissue chromophores from multispectral images. While model-based inversion schemes are promising approaches, major challenges to their practical implementation include the unknown fluence distribution and the scale of the inverse problem. We describe an inversion scheme based on a radiance Monte Carlo model and an adjoint-assisted gradient optimization that incorporates fluence-dependent step sizes and adaptive moment estimation. The inversion is shown to recover absolute chromophore concentrations, blood oxygen saturation, and the Grüneisen parameter from in silico three-dimensional phantom images for different radiance approximations. The scattering coefficient is assumed to be homogeneous and known a priori.
机译:定量光声层析成像法旨在从多光谱图像中恢复组织发色团的局部浓度图。尽管基于模型的反演方案是有前途的方法,但其实际实现的主要挑战包括未知的注量分布和反问题的规模。我们描述了一种基于辐射蒙特卡洛模型和结合了能量依赖步长和自适应矩估计的伴随辅助梯度优化的反演方案。结果表明,该反演可从计算机3D幻影图像中恢复不同的辐射近似度的绝对生色团浓度,血氧饱和度和Grüneisen参数。假设散射系数是均匀的,并且是先验的。

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