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Dose reduction achieved by dynamically collimating the redundant rays in fan-beam and cone-beam CT

机译:通过动态准直扇形束和锥形束CT中的冗余射线来减少剂量

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In X-ray computed tomography (CT), short-scan acquisition that acquires data only over a range of π plus the fan angle, rather than a full range of 2π, is commonly used in circular fan-beam and cone-beam geometry. Such scan aims to reduce acquisition time and radiation dose during data acquisition. However, during a partial circle scan some data are measured once, while other measurements are observed twice. Traditionally, the redundant data are weighted by a smooth function (e.g. the Parker weights) before filtering. In this paper, we present an algorithmic setup that employs dynamic collimation to shield the redundant rays and propose two algorithms to correct the resulting truncation. This approach is able to potentially decrease the dose of 10% for a C-arm CT with fan angle of 10° and of 23% for a diagnostic CT with fan angle of 50°. Evaluation shows that the reconstruction results are of comparable accuracy to the one from standard short-scan FDK, with less dose to the patient.
机译:在X射线计算机断层摄影(CT)中,短扫描采集仅在π加上扇形角度范围内而不是整个2π范围内采集数据,通常用于圆形扇形和锥束几何形状。这种扫描旨在减少数据采集期间的采集时间和辐射剂量。但是,在部分循环扫描期间,某些数据仅被测量一次,而其他测量则被观测两次。传统上,在过滤之前,通过平滑函数(例如,Parker加权)对冗余数据进行加权。在本文中,我们提出了一种使用动态准直来屏蔽多余光线的算法设置,并提出了两种算法来校正结果截断。对于扇形角为10°的C型臂CT,这种方法可以将剂量降低10%,对于扇形角为50°的诊断性CT,可以降低23%的剂量。评估显示,重建结果的准确性与标准短扫描FDK的重建结果相当,对患者的剂量更少。

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