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首页> 外文期刊>The Journal of Nuclear Medicine >The Impact of Optimal Respiratory Gating and Image Noise on Evaluation of Intratumor Heterogeneity on 18F-FDG PET Imaging of Lung Cancer
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The Impact of Optimal Respiratory Gating and Image Noise on Evaluation of Intratumor Heterogeneity on 18F-FDG PET Imaging of Lung Cancer

机译:最佳呼吸门控和图像噪声对肺癌18F-FDG PET成像中肿瘤内异质性评估的影响

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id="p-2">Accurate measurement of intratumor heterogeneity using parameters of texture on PET images is essential for precise characterization of cancer lesions. In this study, we investigated the influence of respiratory motion and varying noise levels on quantification of textural parameters in patients with lung cancer. >Methods: We used an optimal-respiratory-gating algorithm on the list-mode data of 60 lung cancer patients who underwent 18F-FDG PET. The images were reconstructed using a duty cycle of 35% (percentage of the total acquired PET data). In addition, nongated images of varying statistical quality (using 35% and 100% of the PET data) were reconstructed to investigate the effects of image noise. Several global image-derived indices and textural parameters (entropy, high-intensity emphasis, zone percentage, and dissimilarity) that have been associated with patient outcome were calculated. The clinical impact of optimal respiratory gating and image noise on assessment of intratumor heterogeneity was evaluated using Cox regression models, with overall survival as the outcome measure. The threshold for statistical significance was adjusted for multiple comparisons using Bonferroni correction. >Results: In the lower lung lobes, respiratory motion significantly affected quantification of intratumor heterogeneity for all textural parameters (P 0.007) except entropy (P 0.007). The mean increase in entropy, dissimilarity, zone percentage, and high-intensity emphasis was 1.3% ?± 1.5% (P = 0.02), 11.6% ?± 11.8% (P = 0.006), 2.3% ?± 2.2% (P = 0.002), and 16.8% ?± 17.2% (P = 0.006), respectively. No significant differences were observed for lesions in the upper lung lobes (P 0.007). Differences in the statistical quality of the PET images affected the textural parameters less than respiratory motion, with no significant difference observed. The median follow-up time was 35 mo (range, 7-39 mo). In multivariate analysis for overall survival, total lesion glycolysis and high-intensity emphasis were the two most relevant image-derived indices and were considered to be independent significant covariates for the model regardless of the image type considered. >Conclusion: The tested textural parameters are robust in the presence of respiratory motion artifacts and varying levels of image noise.
机译:id =“ p-2”>使用PET图像上的纹理参数准确测量肿瘤内异质性对于精确表征癌症病变至关重要。在这项研究中,我们调查了呼吸运动和噪声水平对肺癌患者质地参数定量的影响。 >方法:我们对60名接受 18 F-FDG PET的肺癌患者的列表模式数据使用了最佳呼吸门控算法。使用35%的占空比(占所获取的全部PET数据的百分比)重建图像。此外,重构了具有不同统计质量的非门控图像(使用35%和100%的PET数据)以研究图像噪声的影响。计算了一些与患者预后相关的全局图像衍生指标和纹理参数(熵,高强度强调,区域百分比和不相似性)。使用Cox回归模型评估最佳呼吸门控和图像噪声对评估肿瘤内异质性的临床影响,以总生存期作为结果指标。使用Bonferroni校正对多个比较的统计显着性阈值进行了调整。 >结果:在下肺叶,呼吸运动显着影响除熵( P )以外的所有纹理参数( P <0.007)的肿瘤内异质性量化> 0.007)。熵,相异性,区域百分比和高强度强调的平均增加为1.3%±1.5%( P = 0.02),11.6%±±11.8%( P = 0.006),2.3%±±2.2%( P = 0.002)和16.8%α±17.2%( P = 0.006)。上肺叶病变无明显差异( P 结论:在存在呼吸运动伪影和变化程度的图像噪声的情况下,所测试的纹理参数具有鲁棒性。

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