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A novel solid-angle tomosynthesis (SAT) scanning scheme

机译:一种新颖的立体角断层合成(SAT)扫描方案

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摘要

>Purpose: Digital tomosynthesis (DTS) recently gained extensive research interests in both diagnostic and radiation therapy fields. Conventional DTS images are generated by scanning an x-ray source and flat-panel detector pair on opposite sides of an object, with the scanning trajectory on a one-dimensional curve. A novel tomosynthesis method named solid-angle tomosynthesis (SAT) is proposed, where the x-ray source scans on an arbitrary shaped two-dimensional surface.>Methods: An iterative algorithm in the form of total variation regulated expectation maximization is developed for SAT image reconstruction. The feasibility and effectiveness of SAT is corroborated by computer simulation studies using three-dimensional (3D) numerical phantoms including a 3D Shepp–Logan phantom and a volumetric CT image set of a human breast.>Results: SAT is able to cover more space in Fourier domain more uniformly than conventional DTS. Greater coverage and more isotropy in the frequency domain translate to fewer artifacts and more accurately restored features in the in-plane reconstruction.>Conclusions: Comparing with conventional DTS, SAT allows cone-shaped x-ray beams to project from more solid angles, thus provides more coverage in the spatial-frequency domain, resulting in better quality of reconstructed image.
机译:>目的:数字断层合成(DTS)最近在诊断和放射治疗领域获得了广泛的研究兴趣。传统的DTS图像是通过扫描对象相对两侧的X射线源和平板检测器对生成的,扫描轨迹位于一维曲线上。提出了一种新颖的断层合成方法,称为立体角断层合成(SAT),其中,X射线源在任意形状的二维表面上进行扫描。>方法:为SAT图像重建开发了期望最大化。使用三维(3D)数字体模(包括3D Shepp–Logan体模和人乳腺的体积CT图像集)的计算机模拟研究证实了SAT的可行性和有效性。>结果:能够比传统DTS更均匀地覆盖傅立叶域中的更多空间。频域中更大的覆盖范围和更大的各向同性意味着更少的伪影和更准确的面内重建特征。>结论:与传统DTS相比,SAT可以投射锥形X射线束从更立体的角度来看,因此在空间频域中提供了更大的覆盖范围,从而导致重建图像的质量更高。

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