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Mitigating motion artifacts in FDK based 3D Cone-beam Brain Imaging System using markers

机译:使用标记缓解基于FDK的3D锥形束脑成像系统中的运动伪影

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Head motion during Computed Tomographic (CT) brain imaging studies can adversely affect the reconstructed image through distortion, loss of resolution and other related artifacts. In this paper, we propose a marker based innovative approach to detect and mitigate motion artifacts in three dimensional cone-beam brain CT systems without using any external motion tracking sensor. Motion is detected using correlations between the adjacent projections. Once motion is detected, motion parameters [i.e. six degrees-of-freedom of motions) are estimated using a numerical optimization technique. Artifacts, caused by motions, are mitigated by using a modified form Feldkemp-Davis-Kress (FDK) algorithm which uses the estimated motion parameters in back-projection stage. The proposed approach has been evaluated on a modified three-dimensional Shepp-Logan phantom with a range of simulated motions. Simulation results demonstrate a quantitative and qualitative validation of motion detection and artifacts mitigation technique.
机译:在计算机断层扫描(CT)脑成像研究中,头部运动会因变形,分辨率降低和其他相关伪影而对重建图像产生不利影响。在本文中,我们提出了一种基于标记的创新方法,无需使用任何外部运动跟踪传感器,即可检测和减轻三维锥束脑部CT系统中的运动伪影。使用相邻投影之间的相关性检测运动。检测到运动后,运动参数[即使用数值优化技术估算运动的六个自由度)。通过使用修改后的形式Feldkemp-Davis-Kress(FDK)算法来减轻由运动引起的伪影,该算法在反投影阶段使用估计的运动参数。所提出的方法已在具有一系列模拟运动的改进的三维Shepp-Logan幻象上进行了评估。仿真结果证明了运动检测和伪影缓解技术的定量和定性验证。

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