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Correlation and support vector machine based motion artifacts mitigation in 3D computer tomography.

机译:3D计算机断层扫描中基于相关和支持向量机的运动伪影缓解。

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摘要

Head motion during Computer Tomographic (CT) studies can adversely affects the reconstructed image through distortion and other artifacts such as blurring and doubling, thereby contributing to misdiagnosis of diseases. In this paper, we propose a method to detect and mitigate motion artifacts in three-dimensional (3D) cone-beam CT system. Motion detection is achieved by comparing the correlation coefficient between the adjacent x-ray projections. Artifacts, caused by motion, are mitigated either by replacing motion corrupted projections with their counterpart 180° apart projections under certain conditions, or by estimating motion corrupted projections using Least Square Support Vector Machine (LS-SVM) based time series prediction. The method has been evaluated on 3D Shepp-Logan phantom. In this research, Feldkamp-David-Kress (FDK) based back-projection algorithm is used for 3D reconstruction process. Computer simulation validates the motion detection and artifacts elimination mechanism. [ABSTRACT FROM AUTHOR]
机译:计算机断层扫描(CT)研究期间的头部运动会通过变形和其他伪影(例如模糊和加倍),对重建的图像产生不利影响,从而导致疾病的误诊。在本文中,我们提出了一种检测和减轻三维(3D)锥束CT系统中运动伪影的方法。通过比较相邻的X射线投影之间的相关系数来实现运动检测。在某些情况下,可以通过将运动损坏的投影替换为相距180°的投影来减轻由运动引起的伪影,或者使用基于最小二乘支持向量机(LS-SVM)的时间序列预测来估算运动损坏的投影,从而减轻伪影。该方法已在3D Shepp-Logan体模上进行了评估。在这项研究中,基于Feldkamp-David-Kress(FDK)的反投影算法用于3D重建过程。计算机仿真验证了运动检测和伪影消除机制。 [作者的摘要]

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