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Adaptive phase-coded reconstruction for cardiac CT

机译:心脏CT的自适应相位编码重建

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Abstract: Cardiac imaging with conventional computed tomography (CT) has gained significant attention in recent years. New hardware development enables a CT scanner to rotate at a faster speed so that less cardiac motion is present in acquired projection data. Many new tomographic reconstruction techniques have also been developed to reduce the artifacts induced by the cardiac motion. Most of the algorithms make use of the projection data collected over several cardiac cycles to formulate a single projection data set. Because the data set is formed with samples collected roughly in the same phase of a cardiac cycle, the temporal resolution of the newly formed data set is significantly improved compared with projections collected continuously. In this paper, we present an adaptive phase- coded reconstruction scheme (APR) for cardiac CT. Unlike the previously proposed schemes where the projection sector size is identical, APR determines each sector size based on the tomographic reconstruction algorithm. The newly proposed scheme ensures that the temporal resolution of each sector is substantially equal. In addition, the scan speed is selected based on the measured EKG signal of the patient. !6
机译:摘要:近年来,常规计算机断层扫描(CT)心脏成像技术已引起广泛关注。新的硬件开发使CT扫描仪能够以更快的速度旋转,从而使采集的投影数据中出现的心脏运动更少。还开发了许多新的层析重建技术来减少由心脏运动引起的伪像。大多数算法都利用在多个心动周期中收集的投影数据来制定单个投影数据集。由于该数据集由大致在心动周期同一阶段收集的样本组成,因此与连续收集的投影相比,新形成的数据集的时间分辨率得到了显着提高。在本文中,我们提出了一种适用于心脏CT的自适应相位编码重建方案(APR)。与先前提出的投影扇区大小相同的方案不同,APR基于断层摄影重建算法确定每个扇区大小。新提出的方案确保每个扇区的时间分辨率基本相等。另外,基于测得的患者的EKG信号来选择扫描速度。 !6

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