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A compressed sensing-based iterative algorithm for CT reconstruction and its possible application to phase contrast imaging

机译:基于压缩感知的CT迭代迭代算法及其在相衬成像中的应用

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摘要

BackgroundComputed Tomography (CT) is a technology that obtains the tomogram of the observed objects. In real-world applications, especially the biomedical applications, lower radiation dose have been constantly pursued. To shorten scanning time and reduce radiation dose, one can decrease X-ray exposure time at each projection view or decrease the number of projections. Until quite recently, the traditional filtered back projection (FBP) method has been commonly exploited in CT image reconstruction. Applying the FBP method requires using a large amount of projection data. Especially when the exposure speed is limited by the mechanical characteristic of the imaging facilities, using FBP method may prolong scanning time and cumulate with a high dose of radiation consequently damaging the biological specimens.
机译:背景技术计算机断层摄影(CT)是一种获取观察对象的断层图像的技术。在实际应用中,特别是在生物医学应用中,一直在追求更低的辐射剂量。为了缩短扫描时间并减少辐射剂量,可以减少每个投影视图的X射线曝光时间或减少投影数量。直到最近,传统的滤波反投影(FBP)方法已被广泛用于CT图像重建中。应用FBP方法需要使用大量的投影数据。尤其是当曝光速度受到成像设备的机械特性的限制时,使用FBP方法可能会延长扫描时间并累积高剂量的辐射,从而损坏生物样本。

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