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Reduction of Dental Filling Metallic Artifacts in CT-Based Attenuation Correction of PET Data Using Weighted Virtual Sinograms

机译:使用加权虚拟铭度施用CT基衰减校正牙科填充金属伪影

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The streak artifacts caused by dental fillings are known to generate artifacts in attenuation maps thus leading to overestimation/underestimation of tracer uptake in resulting PET images. Correction of these artifacts is therefore mandatory to achieve accurate attenuation maps to be used by the CT-based attenuation correction procedure. Our group recently proposed a metal artifact reduction method using the virtual sinogram concept. In spite of the satisfactory results obtained on phantom studies, the algorithm was suffering from slight imperfections such as discontinuity of corrected sinogram bins along the second dimension of the sinogram matrix (i.e. the one sampling angular positions) and an evident difference between corrected and non-affected sinogram bins, especially when the number of affected bins in one column of the sinogram matrix is noticeable. The purpose of this study is to present an improved method allowing to overcome the above mentioned limitations. The proposed method enhances the corrected sinogram using weighted values of the influenced bins in the corrected and non-corrected sinograms, and weighted values of the sinogram bins in the neighboring column of the sinogram matrix. The optimum weighting factors associated with the three data sets mentioned above (α, β and γ) were determined by assessing different combinations of these factors having values falling in the range [0.1-0.9] and statistical analysis of the images of 10 patients with dental fillings. The optimum combination achieved is α=0.3, β=0.6 and γ=0.1. The results reveal that the corrected CT images and attenuation maps preserve more detail especially in regions adjacent to metallic objects whereas the original method suffered from eliminating relevant anatomical details. It was concluded that the proposed MAR method using weighted virtual sinograms improves the quality of clinical CT studies thus allowing the achievement of more accurate attenuation correction of PET data.
机译:已知由牙科填充引起的条纹伪像在衰减图中产生伪影,从而导致在得到的PET图像中估计/低估示踪剂吸收。因此,这些伪影的校正是强制性的,以实现基于CT的衰减校正过程来实现的准确衰减图。我们的团体最近提出了一种使用虚拟铭顶概念的金属伪影减少方法。尽管在幻影研究中获得了令人满意的结果,但该算法患有较小的缺陷诸如沿据据Scogram矩阵的第二尺寸(即,一个采样角位置)的校正的铭顶箱的不连续性,并且校正和非之间的明显差异受影响的铭文箱,特别是当一个柱子中的受影响箱的数量是明显的时,据明。本研究的目的是提出一种允许克服上述局限性的改进方法。所提出的方法使用校正的和未校正的中央图中的受影响的箱的加权值和邻近柱的邻近柱中的邻近柱的加权值来增强校正的思科。与上述三种数据集相关的最佳加权因子(α,β和γ)通过评估这些因素的不同组合来确定,这些因素具有下降在[0.1-0.9]的范围内,10例牙科患者的图像的统计分析馅料。实现的最佳组合是α= 0.3,β= 0.6和γ= 0.1。结果表明,校正的CT图像和衰减图在与金属物体相邻的区域中保持更多细节,而原始方法遭到消除相关的解剖细节。得出结论是,使用加权虚拟铭志汇的拟议MAR方法提高了临床CT研究的质量,从而实现了宠物数据的更准确的衰减校正。

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