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Joint Reconstruction of Absorbed Optical Energy Density and Sound Speed Distributions in Photoacoustic Computed Tomography: A Numerical Investigation

机译:联合重建光声计算机断层扫描中吸收的光能密度和声速分布:数值研究

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摘要

Photoacoustic computed tomography (PACT) is a rapidly emerging bioimaging modality that seeks to reconstruct an estimate of the absorbed optical energy density within an object. Conventional PACT image reconstruction methods assume a constant speed-of-sound (SOS), which can result in image artifacts when acoustic aberrations are significant. It has been demonstrated that incorporating knowledge of an object’s SOS distribution into a PACT image reconstruction method can improve image quality. However, in many cases, the SOS distribution cannot be accurately and/or conveniently estimated prior to the PACT experiment. Because variations in the SOS distribution induce aberrations in the measured photoacoustic wavefields, certain information regarding an object’s SOS distribution is encoded in the PACT measurement data. Based on this observation, a joint reconstruction (JR) problem has been proposed in which the SOS distribution is concurrently estimated along with the sought-after absorbed optical energy density from the photoacoustic measurement data. A broad understanding of the extent to which the JR problem can be accurately and reliably solved has not been reported. In this work, a series of numerical experiments is described that elucidate some important properties of the JR problem that pertain to its practical feasibility. To accomplish this, an optimization-based formulation of the JR problem is developed that yields a non-linear iterative algorithm that alternatively updates the two image estimates. Heuristic analytic insights into the reconstruction problem are also provided. These results confirm the ill-conditioned nature of the joint reconstruction problem that will present significant challenges for practical applications.
机译:光声计算机断层扫描(PACT)是一种快速兴起的生物成像设备,旨在重建物体内吸收的光能密度的估计值。常规的PACT图像重建方法采用恒定的声速(SOS),当声像差很大时,这可能会导致图像伪影。已经证明,将对象的SOS分布知识整合到PACT图像重建方法中可以改善图像质量。但是,在许多情况下,无法在PACT实验之前准确和/或方便地估算SOS分布。由于SOS分布的变化会在测得的光声波场中引起像差,因此在PACT测量数据中会编码有关对象SOS分布的某些信息。基于此观察,提出了一种联合重建(JR)问题,其中从光声测量数据中同时估算SOS分布和所需的吸收光能密度。尚未报道对可以准确可靠地解决JR问题的程度的广泛了解。在这项工作中,描述了一系列数值实验,阐明了JR问题的一些重要性质,这些性质与其实际可行性有关。为此,开发了基于优化的JR问题公式,该公式产生了一个非线性迭代算法,可以交替更新两个图像估计值。还提供了对重建问题的启发式分析见解。这些结果证实了联合重建问题的病态性质,这将对实际应用提出重大挑战。

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