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EM algorithm system modeling by image-space techniques for PET reconstruction

机译:基于图像空间技术的PET重建EM算法系统建模

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Methodology for PET system modeling using image-space techniques in the expectation maximization (EM) algorithm is presented. The approach, applicable to both list-mode data and projection data, is of particular significance to EM algorithm implementations which otherwise only use basic system models (such as those which calculate the system matrix elements on the fly). A basic version of the proposed technique can be implemented using image-space convolution, in order to include resolution effects into the system matrix, so that the EM algorithm gradually recovers the modeled resolution with each update. The improved system modeling (achieved by inclusion of two convolutions per iteration) results in both enhanced resolution and lower noise, and there is often no need for regularization-other than to limit the number of iterations. Tests have been performed with simulated list-mode data and also with measured projection data from a GE Advance PET scanner, for both [/sup 18/F]-FDG and [/sup 124/I]-NaI. The method demonstrates improved image quality in all cases when compared to the conventional FBP and EM methods presently used for clinical data (which do not include resolution modeling). The benefits of this approach for /sup 124/I (which has a low positron yield and a large positron range, usually resulting in noisier and poorer resolution images) are particularly noticeable.
机译:提出了在期望最大化(EM)算法中使用图像空间技术进行PET系统建模的方法。该方法适用于列表模式数据和投影数据,对EM算法实现特别重要,否则,EM算法将仅使用基本系统模型(例如那些动态计算系统矩阵元素的模型)。可以使用图像空间卷积来实现所提出技术的基本版本,以便将分辨率效果包括在系统矩阵中,以便EM算法在每次更新时逐渐恢复建模的分辨率。改进的系统建模(通过在每次迭代中包含两个卷积来实现)可提高分辨率并降低噪声,并且除限制迭代次数外,通常无需进行正则化。对于[/ sup 18 / F] -FDG和[/ sup 124 / I] -NaI,已经使用模拟的列表模式数据以及来自GE Advance PET扫描仪的测量投影数据进行了测试。与目前用于临床数据(不包括分辨率建模)的常规FBP和EM方法相比,该方法在所有情况下均显示出改进的图像质量。这种方法对于/ sup 124 / I(正电子产量低且正电子范围大,通常会导致噪声更大且分辨率较低的图像)的好处特别明显。

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