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Reprojection and backprojection in SPECT image reconstruction

机译:SPECT图像重建中的重投影和反投影

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An algorithm compensating the deterministic effects of photon attenuation, scattering, and collimator divergence associated with quantitative SPECT (single-photon-emission computed tomography) images is presented. The compensation algorithm is based on a technique which traces the geometrical relations of pixels and projection rays. If the attenuation map of the source distribution and the collimator divergence function are known, the compensation is accurate. The implementation of the compensation algorithm within the reprojection processes is carried out in an iterative manner for computer-generated ideal data. Improvement in image reconstruction of SPECT is demonstrated. An analytical study of implementing the compensation algorithm, the backprojection process, is given. A Bayesian analysis is used to suppress the artifacts due to the low count detection of photons associated with SPECT. A comparison of the BIP (Bayesian image processing) and ML (maximum-likelihood) methods on image reconstruction is carried out for computer-generated ideal and Poisson randomized data. Improved images using the BIP method are obtained.
机译:提出了一种算法,可补偿与定量SPECT(单光子发射计算机断层扫描)图像相关的光子衰减,散射和准直器发散的确定性影响。补偿算法基于一种跟踪像素和投影射线的几何关系的技术。如果知道光源分布的衰减图和准直器发散函数,则补偿是准确的。重投影过程中补偿算法的实现以迭代方式对计算机生成的理想数据进行。证明了SPECT图像重建的改进。给出了实现补偿算法,反投影过程的分析研究。贝叶斯分析用于抑制由于与SPECT相关的光子计数低而导致的伪影。针对计算机生成的理想和泊松随机数据,对图像重建中的BIP(贝叶斯图像处理)和ML(最大似然)方法进行了比较。使用BIP方法获得了改进的图像。

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