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Toward Robust High Resolution Fluorescence Tomography: AHybrid Row-action Edge Preserving Regularization

机译:朝着强大的高分辨率荧光断层扫描:Aybrid行行动边缘保持正则化

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Depth-resolved localization and quantification of fluorescence distribution in tissue, called Fluorescence Molecular Tomography (FMT), is highly ill-conditioned as depth information should be extracted from limited number of surface measurements. Inverse solvers resort to regularization algorithms that penalize Euclidean norm of the solution to overcome ill-posedness. While these regularization algorithms offer good accuracy, their smoothing effects result in continuous distributions which lack high-frequency edge-type features of the actual fluorescence distribution and hence limit the resolution offered by FMT. We propose an algorithm that penalizes the total variation (TV) norm of the solution to preserve sharp transitions and high-frequency components in the reconstructed fluorescence map while overcoming ill-posedness. The hybrid algorithm is composed of two levels: 1) An Algebraic Reconstruction Technique (ART), performed on FMT data for fast recovery of a smooth solution that serves as an initial guess for the iterative TV regularization, 2) A time marching TV regularization algorithm, inspired by the Rudin-Osher-Fatemi TV image restoration, performed on the initial guess to further enhance the resolution and accuracy of the reconstruction. The performance of the proposed method in resolving fluorescein tubes inserted in a liquid tissue phantom imaged by a non-contact CW trans-illumination FMT system is studied and compared to conventional regularization schemes. It is observed that the proposed method performs better in resolving fluorescence inclusions at higher depths.
机译:在组织中的深度分辨定位和定量荧光分布,称为荧光分子层析成像(FMT),其应从有限数量的表面测量中提取深度信息。逆求解器恢复正规化算法,以惩罚解决方案的欧几里德规范以克服弊迹。虽然这些正则化算法具有良好的准确性,但它们的平滑效果导致连续分布,缺乏实际荧光分布的高频边缘型特征,因此限制了FMT所提供的分辨率。我们提出了一种算法,可以惩罚解决方案的总变化(TV)规范,以保护重建的荧光图中的急剧转换和高频分量,同时克服不良呈现。混合算法由两个级别组成:1)对FMT数据执行的代数重建技术(ART),以便快速恢复平滑解决方案,该方法是迭代电视正则化的初始猜测,2)行进电视正则化算法的时间由Rudin-Osher-Fatemi TV图像恢复的启发,在初始猜测中进行了进一步提高重建的分辨率和准确性的初步猜测。研究了在分解插入由非接触式CW跨越FMT系统成像的液体组织体模具中插入的荧光素管的性能进行了研究,并与传统的正则化方案进行比较。观察到所提出的方法更好地在更高深度的荧光夹杂物中表现更好。

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