首页> 外文期刊>The Journal of Nuclear Medicine >Does Reducing CT Artifacts from Dental Implants Influence the PET Interpretation in PET/CT Studies of Oral Cancer and Head and Neck Cancer?
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Does Reducing CT Artifacts from Dental Implants Influence the PET Interpretation in PET/CT Studies of Oral Cancer and Head and Neck Cancer?

机译:减少口腔植入物的CT伪影是否会影响口腔癌和头颈癌的PET / CT研究中的PET解释?

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摘要

In patients with oral head and neck cancer, the presence of metallic dental implants produces streak artifacts in the CT images. These artifacts negate the utility of CT for the spatial localization of PET findings and may propagate through the CT-based attenuation correction into the PET images. In this study, we evaluated the efficacy of an algorithm that reduces metallic artifacts in CT images and the impact of this approach on the quantification of PET images. METHODS: Fifty-one patients with and 9 without dental implants underwent a PET/CT study. CT images through the patient's dental implants were reconstructed using both standard CT reconstruction and an algorithm that reduces metallic artifacts. Attenuation correction factors were calculated from both sets of CT images and applied to the PET data. The CT images were evaluated for any reduction of the artifacts. The PET images were assessed for any quantitative change introduced by metallic artifact reduction. RESULTS: For each reconstruction, 2regions of interest were defined in areas where the standard CT reconstruction overestimated the Hounsfield units (HU), 2 were defined in underestimated areas, and 1 was defined in a region unaffected by the artifacts. The 5 regions of interest were transferred to the other 3 reconstructions. Mean HU or mean Bq/cm(3) were obtained for all regions. In the CT reconstructions, metallic artifact reduction decreased the overestimated HUs by approximately 60% and increased the underestimated HUs by approximately 90%. There was no change in quantification in the PET images between the 2 algorithms (Spearman coefficient of rank correlation, 0.99). Although the distribution of attenuation (HU) changed considerably in the CT images, the distribution of activity did not change in the PET images. CONCLUSION: Our study demonstrated that the algorithm can enhance the structural and spatial content of CT images in the presence of metallic artifacts. The CT artifacts do not propagate through the CT-based attenuation correction into the PET images, confirming the robustness of CT-based attenuation correction in the presence of metallic artifacts. The study also demonstrated that considerable changes in CT images do not change the PET images.
机译:在患有口腔头颈癌的患者中,金属牙科植入物的存在会在CT图像中产生条纹​​伪影。这些伪影会否定CT在PET发现的空间定位中的作用,并且可能会通过基于CT的衰减校正传播到PET图像中。在这项研究中,我们评估了减少CT图像中金属伪影的算法的有效性,以及该方法对PET图像定量的影响。方法:51例有9例没有牙种植体的患者接受了PET / CT研究。使用标准CT重建和减少金属伪影的算法,重建了通过患者牙齿植入物的CT图像。从两组CT图像中计算出衰减校正因子,并将其应用于PET数据。评估CT图像的伪影是否减少。评估PET图像中因金属伪影减少而引起的任何定量变化。结果:对于每个重建,在标准CT重建高估Hounsfield单位(HU)的区域中定义了2个感兴趣的区域,在低估区域中定义了2个,在不受文物影响的区域中定义了1个。将感兴趣的5个区域转移到其他3个重建区域中。获得所有区域的平均HU或平均Bq / cm(3)。在CT重建中,金属伪影的减少使高估的HU减少了约60%,而低估的HU则增加了约90%。两种算法之间的PET图像定量没有变化(Spearman等级相关系数为0.99)。尽管在CT图像中衰减(HU)的分布发生了很大的变化,但在PET图像中,活性的分布没有变化。结论:我们的研究表明,该算法可以在存在金属伪影的情况下增强CT图像的结构和空间内容。 CT伪影不会通过基于CT的衰减校正传播到PET图像中,从而确认了在存在金属伪影的情况下基于CT的衰减校正的鲁棒性。该研究还表明,CT图像的显着变化不会改变PET图像。

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