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首页> 外文期刊>Journal of X-ray science and technology >FBP-type CT reconstruction algorithms for triple-source circular trajectory with different scanning radii
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FBP-type CT reconstruction algorithms for triple-source circular trajectory with different scanning radii

机译:不同扫描半径的三源圆形轨迹的FBP型CT重建算法

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摘要

Multi-source computed tomography (CT) imaging has unique technical advantages not only for dynamic objects, but also for large-size objects by designing its imaging scan mode. Using the triple-source fan-beam imaging scan mode under three circular trajectories with two different radii, we in this study developed and analyzed theoretically several exact reconstruction algorithms in terms of full-scan and short-scan for three sets of truncated projection data. This triple-source scan configuration in different radii cases is easier to be simulated by a single-source scan configuration in an industrial CT system. The proposed algorithms are based on the idea of filtering-back-projection (FBP) algorithm, and can reconstruct the large-size objects under the same CT devices. The developed algorithms avoid data rebinning and can provide exact and fast image reconstruction. The results of the numerical simulation based data analysis verified that new algorithms were accurate and effective.
机译:多源计算断层扫描(CT)成像不仅具有独特的技术优势,不仅可以用于动态对象,还具有通过设计其成像扫描模式来实现大型对象。 在具有两个不同的半径的三个圆形轨迹下使用三源风扇射线成像扫描模式,我们在本研究中开发并分析了三组截断投影数据的全扫描和短扫描方面的几种精确的重建算法。 在不同的RADII案例中,在工业CT系统中的单源扫描配置更易于模拟此三源扫描配置。 所提出的算法基于滤波后投影(FBP)算法的思想,并且可以在相同的CT设备下重建大尺寸对象。 开发的算法避免了数据绑定,可以提供精确和快速的图像重建。 基于数值模拟的数据分析的结果证实了新算法准确有效。

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