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多光谱光声断层成像中的约束反演与光谱解混

Constrained Inversion and Spectral Unmixing in Multispectral Optoacoustic Tomography.

作者信息

Ding Lu, Dean-Ben Xose Luis, Burton Neal C, Sobol Robert W, Ntziachristos Vasilis, Razansky Daniel

出版信息

IEEE Trans Med Imaging. 2017 Aug;36(8):1676-1685. doi: 10.1109/TMI.2017.2686006. Epub 2017 Mar 22.

DOI:10.1109/TMI.2017.2686006
PMID:28333622
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5585740/
Abstract

Accurate extraction of physical and biochemical parameters from optoacoustic images is often impeded due to the use of unrigorous inversion schemes, incomplete tomographic detection coverage, or other experimental factors that cannot be readily accounted for during the image acquisition and reconstruction process. For instance, inaccurate assumptions in the physical forward model may lead to negative optical absorption values in the reconstructed images. Any artifacts present in the single wavelength optoacoustic images can be significantly aggravated when performing a two-step reconstruction consisting in acoustic inversion and spectral unmixing aimed at rendering the distributions of spectrally distinct absorbers. We investigate a number of algorithmic strategies with non-negativity constraints imposed at the different phases of the reconstruction process. Performance is evaluated in cross-sectional multispectral optoacoustic tomography recordings from tissue-mimicking phantoms and in vivo mice embedded with varying concentrations of contrast agents. Additional in vivo validation is subsequently performed with molecular imaging data involving subcutaneous tumors labeled with genetically expressed iRFP proteins and organ perfusion by optical contrast agents. It is shown that constrained reconstruction is essential for reducing the critical image artifacts associated with inaccurate modeling assumptions. Furthermore, imposing the non-negativity constraint directly on the unmixed distribution of the probe of interest was found to maintain the most robust and accurate reconstruction performance in all experiments.

摘要

由于使用了不严谨的反演方案、断层检测覆盖不完整或在图像采集和重建过程中难以轻易考虑到的其他实验因素,从光声图像中准确提取物理和生化参数常常受到阻碍。例如,物理正向模型中的不准确假设可能导致重建图像中出现负的光吸收值。当执行包括声学反演和光谱解混以呈现光谱上不同吸收体分布的两步重建时,单波长光声图像中存在的任何伪影都可能会显著加剧。我们研究了在重建过程的不同阶段施加非负性约束的多种算法策略。在来自组织模拟体模的横截面多光谱光声断层扫描记录以及嵌入不同浓度造影剂的活体小鼠中评估了性能。随后,利用涉及用基因表达的iRFP蛋白标记的皮下肿瘤和光学造影剂进行器官灌注的分子成像数据进行了额外的体内验证。结果表明,约束重建对于减少与不准确建模假设相关的关键图像伪影至关重要。此外,发现在所有实验中,直接对感兴趣探针的解混分布施加非负性约束可保持最稳健和准确的重建性能。

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