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Four-dimensional (4D) motion detection to correct respiratory effects in treatment response assessment using molecular imaging biomarkers

机译:使用分子成像生物标记物进行四维(4D)运动检测以纠正治疗反应评估中的呼吸作用

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摘要

Observing early metabolic changes in positron emission tomography (PET) is an essential tool to assess treatment efficiency in radiotherapy. However, for thoracic regions, the use of three-dimensional (3D) PET imaging is unfeasible because the radiotracer activity is smeared by the respiratory motion and averaged during the imaging acquisition process. This motioninduced degradation is similar in magnitude with the treatment-induced changes, and the two occurrences become indiscernible. We present a customized temporal-spatial deformable registration method for quantifying respiratory motion in a four-dimensional (4D) PET dataset. Once the motion is quantified, a motion-corrected (MC) dataset is created by tracking voxels to eliminate breathing-induced changes in the 4D imaging scan. The 4D voxeltracking data is then summed to yield a 3D MC-PET scan containing only treatment-induced changes. This proof of concept is exemplified on both phantom and clinical data, where the proposed algorithm tracked the trajectories of individual points through the 4D datasets reducing motion to less than 4 mm in all phases. This correction approach using deformable registration can discern motion blurring from treatment-induced changes in treatment response assessment using PET imaging.
机译:观察正电子发射断层扫描(PET)的早期代谢变化是评估放疗治疗效率的重要工具。但是,对于胸腔区域,使用三维(3D)PET成像是不可行的,因为放射性示踪剂的活性会被呼吸运动抹去并在成像获取过程中平均。这种运动诱发的退化在数量上与治疗诱发的变化相似,并且两种情况变得难以区分。我们提出了一种定制的时空可变形配准方法,用于量化二维(4D)PET数据集中的呼吸运动。一旦对运动进行了量化,就可以通过跟踪体素以消除呼吸引起的4D成像扫描变化来创建运动校正(MC)数据集。然后将4D体素跟踪数据相加,以产生仅包含治疗引起的变化的3D MC-PET扫描。这种概念证明在幻象和临床数据上都得到了证明,其中所提出的算法通过4D数据集跟踪了各个点的轨迹,从而在所有阶段中将运动减小到小于4 mm。使用可变形配准的这种校正方法可以从使用PET成像的治疗反应评估中,根据治疗引起的变化识别运动模糊。

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