使用已知发色团作为通量标记的定量光声成像。

Quantitative photoacoustic imaging using known chromophores as fluence marker.

作者信息

Thomas Anjali, Rietberg Max, Akkus Mervenur, van Soest Gijs, Francis Kalloor Joseph

机构信息

Biomedical Photonic Imaging Group, Technical Medical Center, University of Twente, Enschede, 7522 NB, The Netherlands.

Erasmus MC, Cardiovascular Institute, Department of Cardiology, Biomedical Engineering, Rotterdam, The Netherlands.

出版信息

Photoacoustics. 2024 Dec 19;41:100673. doi: 10.1016/j.pacs.2024.100673. eCollection 2025 Feb.

Abstract

Photoacoustic imaging offers optical contrast images of human tissue at acoustic resolution, making it valuable for diverse clinical applications. However, quantifying tissue composition via optical contrast remains challenging due to the unknown light fluence within the tissue. Here, we propose a method that leverages known chromophores (, arterial blood) to improve the accuracy of quantitative photoacoustic imaging. By using the optical properties of a known chromophore as a fluence marker and integrating it into the optical inversion process, we can estimate the unknown fluence within the tissue. Experimentally, we demonstrate that this approach successfully recovers both the spectral shape and magnitude of the optical absorption coefficient of an unknown chromophore. Additionally, we show that the fluence marker method enhances conventional optical inversion techniques, specifically (i) a straightforward iterative approach and (ii) a gradient-based method. Our results indicate an improvement in accuracy of up to 24.4% when comparing optical absorption recovery with and without the fluence marker. Finally, we present the method's performance and illustrate its applications in carotid plaque quantification.

摘要

光声成像能够以声学分辨率提供人体组织的光学对比度图像,这使其在各种临床应用中具有重要价值。然而,由于组织内光通量未知,通过光学对比度来量化组织成分仍然具有挑战性。在此,我们提出一种利用已知发色团(如动脉血)来提高定量光声成像准确性的方法。通过将已知发色团的光学特性用作通量标记并将其整合到光学反演过程中,我们可以估计组织内未知的通量。在实验中,我们证明这种方法成功恢复了未知发色团的光学吸收系数的光谱形状和大小。此外,我们表明通量标记方法增强了传统的光学反演技术,具体包括(i)一种直接迭代方法和(ii)一种基于梯度的方法。我们的结果表明,在比较有无通量标记时,光学吸收恢复的准确性提高了24.4%。最后,我们展示了该方法的性能,并说明了其在颈动脉斑块定量分析中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/737c/11741946/431ee5b6b563/gr1.jpg

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