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The Improved Reconstruction of Fluorescence Molecular Tomography via Regularized Doubly Orthogonal Matching Pursuit Method

机译:正则化双正交匹配追踪法对荧光分子层析成像的改进重建

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Fluorescence molecular tomography (FMT) is a promising multimodality-fused medical imaging technique, aiming at noninvasively and dynamically visualizing the interaction processes at the cellular and molecular level. However, due to the intricate correlation among columns in system matrix, the inverse problem of FMT faces high ill-posedness. In this work, we propose a novel regularized doubly orthogonal matching pursuit (RDOMP) method through synergistically integrating Gram-Schmidt (GS) orthogonalization with regularized orthogonal matching pursuit (ROMP) to decorrelate the elements in support set against remaining elements. Experiments based on the numerical mouse with double tumors and in vivo mouse were conducted to validate the enhancement of RDOMP with comparison to orthogonal matching pursuit (OMP). sparsity adaptive subspace pursuit (SASP). and ROMP contrast methods. The simulated experimental results demonstrated a better performance of RDOMP in terms of location accuracy, fluorescent yield reconstruction, relative sparsity, and morphological similarity, which highlighted the pruning capability of the introduced GS orthogonalization. And in vivo experimental results demonstrated the practical application of RDOMP on FMT reconstruction.
机译:荧光分子层析成像(FMT)是一种有前途的多模式融合医学成像技术,旨在以无创方式动态地可视化细胞和分子水平上的相互作用过程。然而,由于系统矩阵中各列之间的复杂相关性,FMT的反问题面临很高的不适性。在这项工作中,我们通过将Gram-Schmidt(GS)正交化与正则化的正交匹配追踪(ROMP)协同集成,提出了一种新颖的正则化的双正交匹配追踪(RDOMP)方法,以将支撑集中的元素与其余元素进行去相关。进行了基于具有双重肿瘤的数字小鼠和体内小鼠的实验,以验证RDOMP与正交匹配追踪(OMP)相比的增强。稀疏自适应子空间追踪(SASP)。和ROMP对比方法。仿真实验结果表明,RDOMP在定位精度,荧光产量重建,相对稀疏性和形态相似性方面具有更好的性能,这突出了引入的GS正交化的修剪能力。体内实验结果证明了RDOMP在FMT重建中的实际应用。

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