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首页> 外文期刊>IEEE Transactions on Medical Imaging >Sinogram Blurring Matrix Estimation From Point Sources Measurements With Rank-One Approximation for Fully 3-D PET
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Sinogram Blurring Matrix Estimation From Point Sources Measurements With Rank-One Approximation for Fully 3-D PET

机译:从点源测量到完全3D PET的秩一近似的正弦图模糊矩阵估计

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摘要

An accurate system matrix is essential in positron emission tomography (PET) for reconstructing high quality images. To reduce storage size and image reconstruction time, we factor the system matrix into a product of a geometry projection matrix and a sinogram blurring matrix. The geometric projection matrix is computed analytically and the sinogram blurring matrix is estimated from point source measurements. Previously, we have estimated a 2-D blurring matrix for a preclinical PET scanner. The 2-D blurring matrix only considers blurring effects within a transaxial sinogram and does not compensate for inter-sinogram blurring effects. For PET scanners with a long axial field of view, inter-sinogram blurring can be a major problem influencing the image quality in the axial direction. Hence, the estimation of a 4-D blurring matrix is desirable to further improve the image quality. The 4-D blurring matrix estimation is an ill-conditioned problem due to the large number of unknowns. Here, we propose a rank-one approximation for each blurring kernel image formed by a row vector of the sinogram blurring matrix to improve the stability of the 4-D blurring matrix estimation. The proposed method is applied to the simulated data as well as the real data obtained from an Inveon microPET scanner. The results show that the newly estimated 4-D blurring matrix can improve the image quality over those obtained with a 2-D blurring matrix and requires less point source scans to achieve similar image quality compared with an unconstrained 4-D blurring matrix estimation.
机译:准确的系统矩阵对于正电子发射断层扫描(PET)重建高质量图像至关重要。为了减少存储大小和图像重建时间,我们将系统矩阵分解为几何投影矩阵和正弦图模糊矩阵的乘积。通过解析计算几何投影矩阵,并根据点源测量值估算正弦图模糊矩阵。以前,我们已经为临床前PET扫描仪估算了二维模糊矩阵。 2-D模糊矩阵仅考虑跨轴正弦图内的模糊效果,而不补偿正弦图间的模糊效果。对于具有较长轴向视场的PET扫描仪,正弦图模糊可能是影响轴向图像质量的主要问题。因此,期望4-D模糊矩阵的估计以进一步改善图像质量。由于大量未知数,4-D模糊矩阵估计是一个病态问题。在此,我们为正弦图模糊矩阵的行向量形成的每个模糊核图像提出一种秩近似,以提高4-D模糊矩阵估计的稳定性。所提出的方法适用于模拟数据以及从Inveon microPET扫描仪获得的真实数据。结果表明,与无约束的4D模糊矩阵估计相比,新估计的4D模糊矩阵可以比使用2D模糊矩阵获得的图像质量更高,并且需要更少的点源扫描以实现相似的图像质量。

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