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基于最大熵的非负光声断层成像重建。

Maximum Entropy Based Non-Negative Optoacoustic Tomographic Image Reconstruction.

出版信息

IEEE Trans Biomed Eng. 2019 Sep;66(9):2604-2616. doi: 10.1109/TBME.2019.2892842. Epub 2019 Jan 14.

Abstract

OBJECTIVE

Optoacoustic (photoacoustic) tomography is aimed at reconstructing maps of the initial pressure rise induced by the absorption of light pulses in tissue. In practice, due to inaccurate assumptions in the forward model, noise, and other experimental factors, the images are often afflicted by artifacts, occasionally manifested as negative values. The aim of this work is to develop an inversion method which reduces the occurrence of negative values and improves the quantitative performance of optoacoustic imaging.

METHODS

We present a novel method for optoacoustic tomography based on an entropy maximization algorithm, which uses logarithmic regularization for attaining non-negative reconstructions. The reconstruction image quality is further improved using structural prior-based fluence correction.

RESULTS

We report the performance achieved by the entropy maximization scheme on numerical simulation, experimental phantoms, and in-vivo samples.

CONCLUSION

The proposed algorithm demonstrates superior reconstruction performance by delivering non-negative pixel values with no visible distortion of anatomical structures.

SIGNIFICANCE

Our method can enable quantitative optoacoustic imaging, and has the potential to improve preclinical and translational imaging applications.

摘要

目的

光声(光声)断层扫描旨在重建组织中光脉冲吸收引起的初始压力升高的图谱。在实践中,由于正向模型的假设不准确、噪声和其他实验因素,图像经常受到伪影的影响,偶尔表现为负值。本工作的目的是开发一种反转方法,减少负值的发生,提高光声成像的定量性能。

方法

我们提出了一种基于最大熵算法的光声断层扫描新方法,该方法使用对数正则化来实现非负重建。进一步使用基于结构先验的光流校正来提高重建图像的质量。

结果

我们报告了熵最大化方案在数值模拟、实验体模和体内样本上的性能。

结论

所提出的算法通过提供无可见解剖结构失真的非负像素值,表现出优越的重建性能。

意义

我们的方法可以实现定量光声成像,并有可能改善临床前和转化成像应用。

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