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Patch-based generation of a pseudo CT from conventional MRI sequences for MRI-only radiotherapy of the brain

机译:基于贴片生成来自常规mRI序列的伪CT,用于脑的仅mRI放射疗法

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摘要

Purpose: In radiotherapy (RT) based on magnetic resonance imaging (MRI) as the only modality, the information on electron density must be derived from the MRI scan by creating a so-called pseudo computed tomography (pCT). This is a nontrivial task, since the voxel-intensities in an MRI scan are not uniquely related to electron density. To solve the task, voxel-based or atlas-based models have typically been used. The voxel-based models require a specialized dual ultrashort echo time MRI sequence for bone visualization and the atlas-based models require deformable registrations of conventional MRI scans. In this study, we investigate the potential of a patch-based method for creating a pCT based on conventional T1-weighted MRI scans without using deformable registrations. We compare this method against two state-of-the-art methods within the voxel-based and atlas-based categories. Methods: The data consisted of CT and MRI scans of five cranial RT patients. To compare the performance of the different methods, a nested cross validation was done to find optimal model parameters for all the methods. Voxel-wise and geometric evaluations of the pCTs were done. Furthermore, a radiologic evaluation based on water equivalent path lengths was carried out, comparing the upper hemisphere of the head in the pCT and the real CT. Finally, the dosimetric accuracy was tested and compared for a photon treatment plan.Results:The pCTs produced with the patch-based method had the best voxel-wise, geometric, and radiologic agreement with the real CT, closely followed by the atlas-based method. In terms of the dosimetric accuracy, the patch-based method had average deviations of less than 0.5% in measures related to target coverage. Conclusions: We showed that a patch-based method could generate an accurate pCT based on conventional T1-weighted MRI sequences and without deformable registrations. In our evaluations, the method performed better than existing voxel-based and atlas-based methods and showed a promising potential for RT of the brain based only on MRI.
机译:目的:在基于磁共振成像(MRI)的放射疗法(RT)作为唯一形式的情况下,必须通过创建所谓的伪计算机断层扫描(pCT)从MRI扫描中得出有关电子密度的信息。这是一项艰巨的任务,因为MRI扫描中的体素强度并不唯一地与电子密度相关。为了解决该任务,通常使用基于体素或基于图集的模型。基于体素的模型需要专门的双重超短回波时间MRI序列以进行骨骼可视化,而基于图集的模型则需要常规MRI扫描的可变形配准。在这项研究中,我们调查了基于补丁的方法在不使用可变形配准的情况下基于常规T1加权MRI扫描创建pCT的潜力。我们将该方法与基于体素和基于图集的类别中的两种最新方法进行了比较。方法:数据由5例颅脑RT患者的CT和MRI扫描组成。为了比较不同方法的性能,进行了嵌套交叉验证,以找到所有方法的最佳模型参数。对pCT进行了体素方向和几何评估。此外,根据水等效路径长度进行了放射学评估,比较了pCT和实际CT中头部的上半球。最后,测试并比较了光子治疗方案的剂量学准确性。结果:使用基于贴片的方法生产的pCT与真实CT的体素,几何和放射学一致性最佳,紧随其后的是基于Atlas的方法。就剂量准确性而言,基于补丁的方法在与目标覆盖率相关的度量中的平均偏差小于0.5%。结论:我们表明基于补丁的方法可以基于传统的T1加权MRI序列生成准确的pCT,并且没有可变形的配准。在我们的评估中,该方法比现有的基于体素和基于图集的方法表现更好,并且仅基于MRI表现出了有希望的脑RT潜力。

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