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Pulmonary CT image registration and warping for tracking tissue deformation during the respiratory cycle through 3D consistent image registration

机译:肺部CT图像配准和翘曲通过3D一致图像配准跟踪呼吸周期中的组织变形

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摘要

Tracking lung tissues during the respiratory cycle has been a challenging task for diagnostic CT and CT-guided radiotherapy. We propose an intensity- and landmark-based image registration algorithm to perform image registration and warping of 3D pulmonary CT image data sets, based on consistency constraints and matching corresponding airway branchpoints. In this paper, we demonstrate the effectivenss and accuracy of this algorithm in tracking lung tissues by both animal and human data sets. In the animal study, the result showed a tracking accuracy of 1.9 mm between 50% functional residual capacity (FRC) and 85% total lung capacity (TLC) for 12 metal seeds implanted in the lungs of a breathing sheep under precise volume control using a pulmonary ventilator. Visual inspection of the human subject results revealed the algorithm’s potential not only in matching the global shapes, but also in registering the internal structures (e.g., oblique lobe fissures, pulmonary artery branches, etc.). These results suggest that our algorithm has significant potential for warping and tracking lung tissue deformation with applications in diagnostic CT, CT-guided radiotherapy treatment planning, and therapeutic effect evaluation.
机译:在诊断性CT和CT引导的放射治疗过程中,在呼吸周期中追踪肺组织一直是一项艰巨的任务。我们提出基于强度和界标的图像配准算法,以基于一致性约束并匹配相应的气道分支点来执行3D肺部CT图像数据集的图像配准和变形。在本文中,我们通过动物和人类数据集展示了该算法在跟踪肺组织中的有效性和准确性。在动物研究中,结果显示,在精确控制的情况下,使用50%功能残余容量(FRC)和85%总肺部容量(TLC)在植入呼吸绵羊的肺部中的12种金属种子时,跟踪精度为1.9 mm。肺呼吸机。目视检查人类受试者的结果表明,该算法不仅具有匹配整体形状的潜力,而且还具有记录内部结构(例如,斜叶裂痕,肺动脉分支等)的潜力。这些结果表明,我们的算法在诊断CT,CT引导的放射疗法治疗计划和治疗效果评估中的应用具有在翘曲和跟踪肺组织变形方面的巨大潜力。

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