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Iterative Reconstruction for Multi-Source Inverse Geometry CT: a Feasibility Study

机译:多源逆几何CT:可行性研究的迭代重建

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In a 3rd generation CT system, a single source projects the entire field of view (FOV) onto a large detector opposite to the source. In multi-source inverse geometry CT imaging, a multitude of sources sequentially project complementary parts of the FOV on a much smaller detector. These sources may be distributed in both the trans-axial and axial directions and jointly cover the entire FOV. Multi-source CT has several important advantages, including large axial coverage, improved dose-efficiency, and improved spatial resolution. One of the challenges of this concept is to ensure that no artifacts emerge in the reconstructed images where the sampling switches from one source to the next. This work studies iterative reconstruction for multi-source imaging and focuses on the appearance of such artifacts. For that purpose, phantom data are simulated using a realistic multi-source CT geometry, iteratively reconstructed and inspected for artifact content. More realistic experiments using rebinned clinical datasets (emulating a multi-source CT system) have also been performed. The results confirm the feasibility of artifact-free multi-source CT imaging in both full-scan and half-scan situations.
机译:在第三代CT系统中,单个源将整个视野(FOV)投影到与源相对的大型检测器上。在多源逆几何CT成像中,在更小的检测器上顺序地将FOV的互补部分顺序地项目互补部分。这些源可以分布在横轴和轴向方向上并共同覆盖整个FOV。多源CT具有几个重要的优点,包括大的轴向覆盖,提高剂量效率和改善的空间分辨率。该概念的挑战之一是确保在重建的图像中没有出现在从一个源切换到下一个源的重建图像中的伪影。这项工作研究了多源成像的迭代重建,并专注于这种伪影的外观。为此目的,使用逼真的多源CT几何模拟幻像数据,迭代地重建和检查伪像内容。还执行了使用Rebnned临床数据集的更现实实验(模拟多源CT系统)。结果证实了在全扫描和半扫描情况下无伪像多源CT成像的可行性。

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