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首页> 外文期刊>IEEE Transactions on Medical Imaging >Influence and Compensation of Truncation Artifacts in MR-Based Attenuation Correction in PET/MR
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Influence and Compensation of Truncation Artifacts in MR-Based Attenuation Correction in PET/MR

机译:截断伪像在PET / MR中基于MR的衰减校正中的影响和补偿

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The goal of this article is to quantify the influence of truncation artifacts in the magnetic resonance (MR)-based attenuation map (MRMap) on reconstructed positron emission tomography (PET) image volumes and to propose a new method for minimizing this influence. Methods: PET data sets of 20 patients investigated in a Philips Ingenuity PET/MR were reconstructed with and without applying two different methods for truncation compensation (TC1 vendor-provided, TC2 newly developed). In this patient group, the extent of truncation artifacts and quality of the truncation compensation (TC) was assessed visually in the MRMaps. In three additional patients MRMaps generated by algorithm TC2 could be compared to the ground truth of transmission-based attenuation maps obtained with a Siemens ECAT ${rm HR}^{+}$ scanner. The influence of truncation on regional SUVs in lesions, other hot structures (bladder, kidney, myocardium) and the arms was assessed in suitable volume of interests (VOI). Results: Truncation compensated MRMaps exhibited residual artifacts in the arms in 16 patients for algorithm TC1 and to a lesser extent in eight patients for algorithm TC2. Compared to the transmission-based attenuation maps algorithm TC2 slightly overestimated the size of the truncated arms by 0.3 cm in the radial direction. Without truncation compensation, VOIs located in the trunk showed an average ${rm SUV}_{max}$ underestimation of less than 5.4% relative to the results obtained with TC2. Inside the patients' arms underestimations up to 46.5% were found. Conclusion: In the trunk, standardized uptake values (SUV) underestimations due to truncation artifacts in the MRMap are rather small. Inside the arms, severe SUV underestimations can occur. Therefore, reliable TC is mandatory and can be achieved by applying the newly developed algorithm TC2 which has y- elded promising results so far. Implementation of the proposed method is straightforward and should be easily adaptable to other PET/MR systems.
机译:本文的目的是量化基于磁共振(MR)的衰减图(MRMap)中的截断伪影对重建的正电子发射断层扫描(PET)图像量的影响,并提出一种将这种影响最小化的新方法。方法:采用和不采用两种不同的截断补偿方法(TC1供应商提供,新开发的TC2)重建了在Philips Ingenuity PET / MR中研究的20例患者的PET数据集。在该患者组中,在MRMap中通过视觉评估了截断伪影的程度和截断补偿(TC)的质量。在另外三名患者中,可以将算法TC2生成的MRMap与使用Siemens ECAT $ {rm HR} ^ {+} $扫描仪获得的基于传输的衰减图的地面真相进行比较。截断对病变,其他热结构(膀胱,肾脏,心肌)和手臂中局部SUV的影响以适当的兴趣量(VOI)进行了评估。结果:对于算法TC1,截断补偿MRMap在16例患者的手臂中表现出残留的伪影,对于算法TC2,在八名患者中表现出较小的残留假象。与基于传输的衰减图算法相比,TC2在径向上高估了截断臂的大小0.3 cm。没有截断补偿,位于行李箱中的VOI相对于TC2获得的结果显示平均$ {rm SUV} _ {max} $被低估了不到5.4%。在患者的手臂内部,发现低估了46.5%。结论:在行李箱中,由于MRMap中的截断伪像,标准化摄取值(SUV)低估了。在手臂内部,可能会严重低估SUV。因此,可靠的TC是必不可少的,可以通过应用新开发的算法TC2来实现,该算法到目前为止已取得了可喜的成果。所提出的方法的实现是直接的,并且应该容易地适用于其他PET / MR系统。

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