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Correction for Resolution Non-Uniformities Caused by Anode Angulation in Computed Tomography

机译:校正由计算机断层扫描中阳极角引起的分辨率不均匀性

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Most X-ray tubes comprise a rotating anode that is bombarded with electrons to produce X-rays. A substantial amount of heat is generated, and to increase the area of the anode exposed to the electrons, without increasing the apparent size of the focal spot, the focal track of the anode is generally beveled with a very shallow angle (typically 5-7deg in a CT tube). Due to the line focus principle, this allows a fairly large area of the focal track to be exposed to electrons while retaining a fairly small effective projected focal spot. One side effect of anode angulation is that the focal spot appears different from different positions in the detector array; the effective focal spot size at a constant distance from the tube will be larger for a peripheral detector than for a central one. These differences in the effective size of the focal spot across the field of view lead to worse resolution in the periphery than in the center of reconstructed images. In this work we describe a method for achieving more uniform resolution in fan-beam CT images by correcting for these focal spot angulation effects. We do so by modeling the effects as a series of local blurrings in the space of transmitted CT intensities and determining the effective coefficients of the corresponding discrete convolutions. The effect of these blurrings can then be compensated for in the sinogram domain through the use of a penalized-likelihood sinogram restoration model we have recently developed.
机译:大多数X射线管都包含一个旋转的阳极,该阳极会受到电子轰击而产生X射线。产生大量的热量,并且为了增加阳极暴露于电子的面积而又不增加焦点的视在尺寸,通常将阳极的焦点轨迹倾斜成非常浅的角度(通常为5-7度)在CT管中)。由于线聚焦原理,这允许相当大面积的焦点轨迹暴露于电子,同时保留相当小的有效投影焦点。阳极成角度的一个副作用是,焦点出现在检测器阵列中不同位置上的现象不同。相对于中心检测器,在距检测管恒定距离处的有效焦点尺寸将更大。整个视场上焦斑的有效尺寸上的这些差异导致外围的分辨率比重建图像的中心差。在这项工作中,我们描述了一种通过校正这些焦点成角度效应而在扇形束CT图像中实现更均匀分辨率的方法。我们通过将效应建模为透射CT强度空间中的一系列局部模糊并确定相应离散卷积的有效系数来实现。然后,通过使用我们最近开发的惩罚似然正弦图恢复模型,可以在正弦图域中补偿这些模糊的影响。

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