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Image Restoration Using Functional and Anatomical Information Fusion with Application to SPECT-MRI Images

机译:功能和解剖学信息融合的图像复原及其在SPECT-MRI图像中的应用

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摘要

Image restoration is usually viewed as an ill-posed problem in image processing, since there is no unique solution associated with it. The quality of restored image closely depends on the constraints imposed of the characteristics of the solution. In this paper, we propose an original extension of the NAS-RIF restoration technique by using information fusion as prior information with application in SPECT medical imaging. That extension allows the restoration process to be constrained by efficiently incorporating, within the NAS-RIF method, a regularization term which stabilizes the inverse solution. Our restoration method is constrained by anatomical information extracted from a high resolution anatomical procedure such as magnetic resonance imaging (MRI). This structural anatomy-based regularization term uses the result of an unsupervised Markovian segmentation obtained after a preliminary registration step between the MRI and SPECT data volumes from each patient. This method was successfully tested on 30 pairs of brain MRI and SPECT acquisitions from different subjects and on Hoffman and Jaszczak SPECT phantoms. The experiments demonstrated that the method performs better, in terms of signal-to-noise ratio, than a classical supervised restoration approach using a Metz filter.
机译:图像恢复通常被视为图像处理中的不适问题,因为没有与之相关的独特解决方案。恢复图像的质量紧密取决于解决方案特征的限制。在本文中,我们提出了以信息融合作为先验信息并将其应用于SPECT医学成像的NAS-RIF恢复技术的原始扩展。该扩展允许通过在NAS-RIF方法中有效地合并使逆解稳定的正则项来限制恢复过程。我们的修复方法受到从高分辨率解剖程序(如磁共振成像(MRI))中提取的解剖信息的约束。该基于结构解剖的正则化术语使用在来自每个患者的MRI和SPECT数据量之间的初步配准步骤之后获得的无监督马尔可夫分割结果。该方法已成功在30对不同受试者的大脑MRI和SPECT采集以及Hoffman和Jaszczak SPECT体模上进行了测试。实验表明,该方法在信噪比方面比使用Metz滤波器的经典监督恢复方法更好。

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