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Sinogram restoration of dual focal spot CT data

机译:双焦点CT数据的Singram恢复

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摘要

The raw data generated by a computed tomography (CT) machine are not readily usable for reconstruction. This is the result of various system non-idealities, and although the deterministic nature of corruption effects like crosstalk and afterglow permits removal through deconvolution, there is the drawback that deconvolution increases noise. Methods that perform raw data correction combined with noise suppression are commonly termed sinogram restoration methods. The need for sinogram restoration arises, for example, when photon counts are low and non-statistical reconstruction algorithms like filtered backprojection are used. Many modern CT machines offer a so-called dual focal spot (DFS) mode, which serves the goal of increased radial sampling by switching the focal spot between two positions on the anode plate during the scan. Although the focal spot mode does not play a role with respect to how the data are affected by the above mentioned corruption effects, it needs to be taken into account, if regularized sinogram restoration is to be applied to the data. This work points out the subtle difference in processing that sinogram restoration for DFS requires, how it is correctly employed within the penalized maximum likelihood sinogram restoration algorithm, and what impact that has on image quality.
机译:由计算机断层摄影(CT)机生成的原始数据不易用于重建。这是各种系统不理想的结果,尽管腐败效应(例如串扰和余辉)的确定性性质允许通过反卷积消除,但存在反卷积会增加噪声的缺点。将原始数据校正与噪声抑制相结合的方法通常称为正弦图恢复方法。例如,当光子计数较低且使用了非统计重建算法(例如滤波后投影)时,就需要进行正弦图恢复。许多现代CT机都提供了所谓的双焦点(DFS)模式,其目的是通过在扫描过程中在阳极板上的两个位置之间切换焦点来增加径向采样的目的。尽管焦点模式在数据如何受到上述损坏效应的影响方面不起作用,但如果要将正则化正弦图恢复应用于数据,则必须考虑到它。这项工作指出了DFS的正弦图还原所需的处理方面的细微差异,如何在受惩罚的最大似然正弦图还原算法中正确使用它以及对图像质量有什么影响。

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