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Quantitative photoacoustic imaging: correcting for heterogeneous light fluence distributions using diffuse optical tomography

机译:定量光声成像:使用扩散光学层析成像校正异质光通量分布

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摘要

The specificity of molecular and functional photoacoustic (PA) images depends on the accuracy of the photoacoustic absorption spectroscopy. The PA signal is proportional to the product of the optical absorption coefficient and local light fluence; quantitative PA measurements of the optical absorption coefficient therefore require an accurate estimation of optical fluence. Light-modeling aided by diffuse optical tomography (DOT) can be used to map the required fluence and to reduce errors in traditional PA spectroscopic analysis. As a proof-of-concept, we designed a tissue-mimicking phantom to demonstrate how fluence-related artifacts in PA images can lead to misrepresentations of tissue properties. To correct for these inaccuracies, the internal fluence in the tissue phantom was estimated by using DOT to reconstruct spatial distributions of the absorption and reduced scattering coefficients of multiple targets within the phantom. The derived fluence map, which only consisted of low spatial frequency components, was used to correct PA images of the phantom. Once calibrated to a known absorber, this method reduced errors in estimated absorption coefficients from 33% to 6%. These results experimentally demonstrate that combining DOT with PA imaging can significantly reduce fluence-related errors in PA images, while producing quantitatively accurate, high-resolution images of the optical absorption coefficient.
机译:分子和功能性光声(PA)图像的特异性取决于光声吸收光谱的准确性。 PA信号与光吸收系数和局部光通量的乘积成正比;因此,对光吸收系数的定量PA测量需要对光通量进行准确估计。借助漫射光学层析成像(DOT)辅助的光建模可用于绘制所需的注量,并减少传统PA光谱分析中的误差。作为概念验证,我们设计了一个模仿组织的模型,以演示PA图像中与注量相关的伪影如何导致对组织特性的错误陈述。为了纠正这些不准确之处,通过使用DOT重建体模中多个目标的吸收空间分布和减小的散射系数,来估计组织体模中的内部注量。导出的注量图仅由低空间频率分量组成,用于校正模型的PA图像。一旦校准到已知的吸收器,该方法将估计吸收系数的误差从33%降低到6%。这些结果实验证明,将DOT与PA成像相结合可以显着减少PA图像中与注量相关的误差,同时生成定量准确,高分辨率的光吸收系数图像。

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