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Anisotropic Point Spread Function of Cone-Beam Computed Tomography

机译:锥形光束计算断层扫描的各向异性点传播功能

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Cone-beam computed tomography (CBCT) provides a real volume imaging modality, which can reconstruct a digital volume with an isotropic grid resolution. However, the imaging resolution of a CBCT system is not identical among spatial orientations, which manifests an anisotropic three-dimensional point spread function (3D PSF), or a PSF ellipsoid. According to the CBCT imaging procedure, the anisotropic factors include the x-ray cone-beam quality, focal spot size and shape, divergence projection angle, scanning orbit, and reconstruction algorithms. Since x-rays are generated by electron bombardment on a slope target anode, the x-ray source is of finite size and non-circle shape, which can neither be considered as a point nor a planar spot in strict sense. Due to non-uniform penetration depths in the anode target, the wavefronts of the emanating x-rays assume non-spheric distributions, as described by the heel effect, which becomes pronounced in a large cone-angle projection. The spatial blurring thereby is rather complicated. In this paper, we will study the anisotropy of 3D PSF under diverse imaging factors, including the heel effect, the focal spot size and shape, and the cone angle. Both computer simulation and phantom experiment on a flat-panel-detector CBCT system will be reported.
机译:锥束计算机断层扫描(CBCT)提供了真正的体积成像模型,其可以重建具有各向同性网格分辨率的数字体积。然而,CBCT系统的成像分辨率在空间取向之间不相同,其表现出各向异性三维点扩展功能(3D PSF)或PSF椭圆体。根据CBCT成像程序,各向异性因子包括X射线锥形光束质量,焦点尺寸和形状,发散投影角度,扫描轨道和重建算法。由于X射线由电子轰击在斜率目标阳极上产生,因此X射线源具有有限尺寸和非圆形形状,其既不能被认为是严格意义上的点也不是平坦的光斑。由于阳极靶中的不均匀穿透深度,发光X射线的波前呈现非球形分布,如鞋跟效应所描述的,这变得明显在大锥角投影中。因此,空间模糊相当复杂。在本文中,我们将在不同成像因子下研究3D PSF的各向异性,包括脚后肌,焦点尺寸和形状,锥角。将报告平板探测器CBCT系统上的计算机仿真和幻像实验。

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