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SPATIO-TEMPORAL DECONVOLUTION OF PERFUSION CT DATA IN RECTAL TUMOR PATIENTS

机译:直肠肿瘤患者灌注CT数据的时空折应

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Anatomical imaging modalities such as MR and CT produce high resolution images that are essential in modern health care. Anatomical imaging, however, can be supplemented with functional imaging to provide additional insights into the status and progression of disease. In perfusion imaging, a bolus of contrast entering a tissue region of interest is carefully monitored in order to derive hemodynamic parameters. While useful, perfusion parameter maps tend to be noisy, in part because the parameters of every voxel are computed independently of its neighboring voxels. A spatio-temporally correlated approach to estimating perfusion parameters has been previously introduced. In this paper, we expand upon this earlier formulation and demonstrate its functionality on a set of rectal tumor patients undergoing CT perfusion (CTp) studies. Our results show that our spatio-temporal deconvolution approach is less noisy than conventional singular value de-convolution approach, and show greater separation between normal and cancerous regions.
机译:解剖学成像模式,例如MR和CT产生高分辨率在现代医疗保健中必不可少的图像。然而,解剖成像可以补充功能成像,以提供疾病状态和进展的额外见解。在灌注成像中,仔细监测与进入感兴趣组织区域的对比度的推注以导出血液动力学参数。虽然有用,灌注参数图往往是嘈杂的,部分原因是每个体素的参数独立于其相邻的体素计算。先前已经引入了一种时空相关方法来估计灌注参数。在本文中,我们在前早期的配方上扩展,并证明其在进行CT灌注(CTP)研究的一组直肠肿瘤患者上的功能。我们的研究结果表明,我们的时空碎屑方法比传统的奇异值去卷积方法少噪声,并且在正常和癌症地区之间表现出更大的分离。

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