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Self-prior strategy for organ reconstruction in fluorescence molecular tomography

机译:荧光分子层析成像中器官重建的自在策略

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摘要

The purpose of this study is to propose a strategy for organ reconstruction in fluorescence molecular tomography (FMT) without prior information from other imaging modalities, and to overcome the high cost and ionizing radiation caused by the traditional structural prior strategy. The proposed strategy is designed as an iterative architecture to solve the inverse problem of FMT. In each iteration, a short time Fourier transform (STFT) based algorithm is used to extract the self-prior information in the space-frequency energy spectrum with the assumption that the regions with higher fluorescence concentration have larger energy intensity, then the cost function of the inverse problem is modified by the self-prior information, and lastly an iterative Laplacian regularization algorithm is conducted to solve the updated inverse problem and obtains the reconstruction results. Simulations and in vivo experiments on liver reconstruction are carried out to test the performance of the self-prior strategy on organ reconstruction. The organ reconstruction results obtained by the proposed self-prior strategy are closer to the ground truth than those obtained by the iterative Tikhonov regularization (ITKR) method (traditional non-prior strategy). Significant improvements are shown in the evaluation indexes of relative locational error (RLE), relative error (RE) and contrast-to-noise ratio (CNR). The self-prior strategy improves the organ reconstruction results compared with the non-prior strategy and also overcomes the shortcomings of the traditional structural prior strategy. Various applications such as metabolic imaging and pharmacokinetic study can be aided by this strategy.
机译:这项研究的目的是提出一种无需其他成像方式的先验信息即可在荧光分子断层扫描(FMT)中进行器官重建的策略,并克服传统结构先验策略带来的高成本和电离辐射。所提出的策略被设计为解决FMT逆问题的迭代架构。在每次迭代中,基于短时傅立叶变换(STFT)的算法用于提取空间频率能谱中的自先信息,并假设荧光浓度较高的区域具有较大的能量强度,则其代价函数为利用自先验信息对反问题进行修正,最后进行迭代的拉普拉斯正则化算法来解决更新后的反问题并获得重建结果。进行肝脏重建的模拟和体内实验,以测试自我优先策略在器官重建中的性能。与通过迭代的Tikhonov正则化(ITKR)方法(传统的非优先策略)获得的器官重建结果相比,通过拟议的自我优先策略获得的器官重建结果更接近地面真相。相对位置误差(RLE),相对误差(RE)和对比噪声比(CNR)的评估指标显示出显着改进。与非优先策略相比,自我优先策略改善了器官重建效果,并且克服了传统结构优先策略的缺点。这种策略可以辅助各种应用,例如代谢成像和药代动力学研究。

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