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Multi-source inverse geometry CT : a new system concept for X-ray computed tomography

机译:多源逆几何CT:X射线计算机断层摄影的新系统概念

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摘要

Third-generation CT architectures are approaching fundamental limits. Spatial resolution is limited by the focal spot size and the detector cell size. Temporal resolution is limited by mechanical constraints on gantry rotation speed, and alternative geometries such as electron-beam CT and two-tube-two-detector CT come with severe tradeoffs in terms of image quality, dose-efficiency and complexity. Image noise is fundamentally linked to patient dose, and dose-efficiency is limited by finite detector efficiency and by limited spatio-temporal control over the X-ray flux. Finally, volumetric coverage is limited by detector size, scattered radiation, conebeam artifacts, Heel effect, and helical over-scan. We propose a new concept, multi-source inverse geometry CT, which allows CT to break through several of the above limitations. The proposed architecture has several advantages compared to third-generation CT: the detector is small and can have a high detection efficiency, the optical spot size is more consistent throughout the field-of-view, scatter is minimized even when eliminating the anti-scatter grid, the X-ray flux from each source can be modulated independently to achieve an optimal noise-dose tradeoff, and the geometry offers unlimited coverage without cone-beam artifacts. In this work we demonstrate the advantages of multi-source inverse geometry CT using computer simulations.
机译:第三代CT架构正在接近基本极限。空间分辨率受焦点大小和检测器单元大小的限制。时间分辨率受机架旋转速度的机械限制所限制,电子束CT和两管两探测器CT等其他几何形状在图像质量,剂量效率和复杂性方面都存在严重的权衡。图像噪声从根本上与患者剂量有关,而剂量效率受到有限的检测器效率和对X射线通量的有限时空控制的限制。最后,体积覆盖范围受检测器尺寸,散射辐射,锥束伪影,Heel效应和螺旋过扫描的限制。我们提出了一种新概念,即多源逆几何CT,它可以使CT突破以上几个限制。与第三代CT相比,所提出的体系结构具有多个优点:探测器体积小且具有较高的探测效率,在整个视场中光斑尺寸更加一致,即使消除了抗散射性,散射也得以最小化网格中,每个光源的X射线通量都可以独立调制,以实现最佳的噪声剂量折衷,并且其几何形状可提供无限覆盖范围,而不会产生锥束伪影。在这项工作中,我们使用计算机仿真演示了多源逆几何CT的优势。

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