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首页> 外文期刊>Acta oncologica. >Stability of FDG-PET Radiomics features: An integrated analysis of test-retest and inter-observer variability
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Stability of FDG-PET Radiomics features: An integrated analysis of test-retest and inter-observer variability

机译:FDG-PET Radiomics功能的稳定性:重测和观察者间差异的综合分析

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Purpose. Besides basic measurements as maximum standardized uptake value (SUV)max or SUVmean derived from 18F-FDG positron emission tomography (PET) scans, more advanced quantitative imaging features (i.e. "Radiomics" features) are increasingly investigated for treatment monitoring, outcome prediction, or as potential biomarkers. With these prospected applications of Radiomics features, it is a requisite that they provide robust and reliable measurements. The aim of our study was therefore to perform an integrated stability analysis of a large number of PET-derived features in non-small cell lung carcinoma (NSCLC), based on both a test-retest and an inter-observer setup. Methods. Eleven NSCLC patients were included in the test-retest cohort. Patients underwent repeated PET imaging within a one day interval, before any treatment was delivered. Lesions were delineated by applying a threshold of 50% of the maximum uptake value within the tumor. Twenty-three NSCLC patients were included in the inter-observer cohort. Patients underwent a diagnostic whole body PET-computed tomography (CT). Lesions were manually delineated based on fused PET-CT, using a standardized clinical delineation protocol. Delineation was performed independently by five observers, blinded to each other. Fifteen first order statistics, 39 descriptors of intensity volume histograms, eight geometric features and 44 textural features were extracted. For every feature, test-retest and inter-observer stability was assessed with the intra-class correlation coefficient (ICC) and the coefficient of variability, normalized to mean and range. Similarity between test-retest and inter-observer stability rankings of features was assessed with Spearman's rank correlation coefficient. Results. Results showed that the majority of assessed features had both a high test-retest (71%) and inter-observer (91%) stability in terms of their ICC. Overall, features more stable in repeated PET imaging were also found to be more robust against inter-observer variability. Conclusion. Results suggest that further research of quantitative imaging features is warranted with respect to more advanced applications of PET imaging as being used for treatment monitoring, outcome prediction or imaging biomarkers.
机译:目的。除了从18F-FDG正电子发射断层扫描(PET)扫描得出的最大标准化摄取值(SUV)max或SUVmean等基本测量方法以外,越来越多地研究了更高级的定量成像功能(即“放射组学”功能)用于治疗监测,结果预测或作为潜在的生物标志物。有了Radiomics功能的这些预期应用,必须提供可靠且可靠的测量。因此,我们的研究目的是基于重新测试和观察者间设置,对非小细胞肺癌(NSCLC)中大量PET衍生特征进行综合稳定性分析。方法。测试-再测试队列中包括11名NSCLC患者。在进行任何治疗之前,患者应在一天的间隔内重复进行PET成像。通过在肿瘤内施加最大摄取值的50%的阈值来描绘病变。 23名非小细胞肺癌患者被纳入观察者队列。患者接受了诊断性全身PET计算机断层扫描(CT)。使用融合的PET-CT,使用标准化的临床描绘方案手动描绘病变。描绘是由五名彼此不知情的观察员独立进行的。提取了15个一阶统计数据,39个强度体积直方图描述符,8个几何特征和44个纹理特征。对于每个功能,均使用组内相关系数(ICC)和变异系数(均值和范围归一化)评估重测和观察者之间的稳定性。使用Spearman等级相关系数评估了特征的重测和观察者之间稳定性等级之间的相似性。结果。结果表明,大多数评估功能的ICC都具有很高的重测(71%)和观察者间(91%)稳定性。总体而言,还发现在重复PET成像中更稳定的功能对于观察者间的变异性更稳定。结论。结果表明,对于更先进的PET成像应用(如用于治疗监测,结果预测或成像生物标记物),有必要对定量成像特征进行进一步研究。

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