首页> 外文期刊>European Journal of Nuclear Medicine and Molecular Imaging >Robustness of intratumour 18F-FDG PET uptake heterogeneity quantification for therapy response prediction in oesophageal carcinoma
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Robustness of intratumour 18F-FDG PET uptake heterogeneity quantification for therapy response prediction in oesophageal carcinoma

机译:肿瘤内18F-FDG PET摄取异质性定量分析预测食管癌治疗反应的稳健性

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Purpose: Intratumour uptake heterogeneity in PET quantified in terms of textural features for response to therapy has been investigated in several studies, including assessment of their robustness for reconstruction and physiological reproducibility. However, there has been no thorough assessment of the potential impact of preprocessing steps on the resulting quantification and its predictive value. The goal of this work was to assess the robustness of PET heterogeneity in textural features for delineation of functional volumes and partial volume correction (PVC). Methods: This retrospective analysis included 50 patients with oesophageal cancer. PVC of each PET image was performed. Tumour volumes were determined using fixed and adaptive thresholding, and the fuzzy locally adaptive Bayesian algorithm, and heterogeneity was quantified using local and regional textural features. Differences in the absolute values of the image-derived parameters considered were assessed using Bland-Altman analysis. The impact on their predictive value for the identification of patient nonresponders was assessed by comparing areas under the receiver operating characteristic curves. Results: Heterogeneity parameters were more dependent on delineation than on PVC. The parameters most sensitive to delineation and PVC were regional ones (intensity variability and size zone variability), whereas local parameters such as entropy and homogeneity were the most robust. Despite the large differences in absolute values obtained from different delineation methods or after PVC, these differences did not necessarily translate into a significant impact on their predictive value. Conclusion: Parameters such as entropy, homogeneity, dissimilarity (for local heterogeneity characterization) and zone percentage (for regional characterization) should be preferred. This selection is based on a demonstrated high differentiation power in terms of predicting response, as well as a significant robustness with respect to the delineation method used and the partial volume effects.
机译:目的:已经在几项研究中对PET的肿瘤内摄取异质性进行了量化,这些异质性以对治疗反应的质地特征进行了量化,包括评估其对重建的健壮性和生理可再现性。但是,尚未对预处理步骤对所得量化结果及其预测价值的潜在影响进行全面评估。这项工作的目标是评估PET异质性在结构特征上的稳健性,以描绘功能体积和部分体积校正(PVC)。方法:这项回顾性分析包括50例食道癌患者。进行每个PET图像的PVC。使用固定和自适应阈值确定肿瘤体积,并使用局部和区域纹理特征量化模糊局部自适应贝叶斯算法和异质性。使用Bland-Altman分析评估所考虑的图像衍生参数的绝对值差异。通过比较接收器工作特性曲线下的面积,评估了其对识别患者无反应者的预测值的影响。结果:异质性参数更取决于轮廓而不是PVC。对轮廓和PVC最敏感的参数是区域性参数(强度变异性和大小区域变异性),而局部参数(如熵和同质性)最稳健。尽管从不同的描绘方法或在PVC之后获得的绝对值差异很大,但这些差异并不一定会对其预测值产生重大影响。结论:应优先选择诸如熵,同质性,不相似性(用于局部异质性表征)和区域百分比(用于区域表征)等参数。该选择基于已证明的在预测响应方面的高分化能力,以及相对于所使用的描绘方法和部分体积效应的显着鲁棒性。

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