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Direct Estimation of Optical Parameters From Photoacoustic Time Series in Quantitative Photoacoustic Tomography

机译:在定量光声层析成像中根据光声时间序列直接估算光学参数

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摘要

Estimation of optical absorption and scattering of a target is an inverse problem associated with quantitative photoacoustic tomography. Conventionally, the problem is expressed as two folded. First, images of initial pressure distribution created by absorption of a light pulse are formed based on acoustic boundary measurements. Then, the optical properties are determined based on these photoacoustic images. The optical stage of the inverse problem can thus suffer from, for example, artefacts caused by the acoustic stage. These could be caused by imperfections in the acoustic measurement setting, of which an example is a limited view acoustic measurement geometry. In this work, the forward model of quantitative photoacoustic tomography is treated as a coupled acoustic and optical model and the inverse problem is solved by using a Bayesian approach. Spatial distribution of the optical properties of the imaged target are estimated directly from the photoacoustic time series in varying acoustic detection and optical illumination configurations. It is numerically demonstrated, that estimation of optical properties of the imaged target is feasible in limited view acoustic detection setting.
机译:靶标的光吸收和散射的估计是与定量光声层析成像相关的反问题。按照惯例,该问题表示为两个折叠。首先,基于声边界测量值形成通过吸收光脉冲而产生的初始压力分布的图像。然后,基于这些光声图像确定光学性质。反问题的光学平台因此可能遭受例如由声学平台引起的伪像的困扰。这些可能是由声学测量设置中的缺陷引起的,其中一个示例是有限视图的声学测量几何形状。在这项工作中,将定量光声层析成像的前向模型视为声学和光学耦合模型,并使用贝叶斯方法解决了逆问题。在变化的声学检测和光学照明配置中,直接根据光声时间序列估算成像目标光学特性的空间分布。数值证明,在有限视角的声检测设置下,估计成像目标的光学性能是可行的。

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