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首页> 外文期刊>European Journal of Nuclear Medicine and Molecular Imaging >Integration of dynamic parameters in the analysis of F-18-FDopa PET imaging improves the prediction of molecular features of gliomas
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Integration of dynamic parameters in the analysis of F-18-FDopa PET imaging improves the prediction of molecular features of gliomas

机译:动态参数在F-18-FDOPA PET成像分析中的集成改善了GLIMAS的分子特征的预测

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Purpose F-18-FDopa PET imaging of gliomas is routinely interpreted with standardized uptake value (SUV)-derived indices. This study aimed to determine the added value of dynamic F-18-FDopa PET parameters for predicting the molecular features of newly diagnosed gliomas. Methods We retrospectively included 58 patients having undergone an F-18-FDopa PET for establishing the initial diagnosis of gliomas, whose molecular features were additionally characterized according to the WHO 2016 classification. Dynamic parameters, involving time-to-peak (TTP) values and curve slopes, were tested for the prediction of glioma types in addition to current static parameters, i.e., tumor-to-normal brain or tumor-to-striatum SUV ratios and metabolic tumor volume (MTV). Results There were 21 IDH mutant without 1p/19q co-deletion (IDH+/1p19q-) gliomas, 16 IDH mutants with 1p/19q co-deletion (IDH+/1p19q+) gliomas, and 21 IDH wildtype (IDH-) gliomas. Dynamic parameters enabled differentiating the gliomas according to these molecular features, whereas static parameters did not. In particular, a longer TTP was the single best independent predictor for identifying (1) IDH mutation status (area under the curve (AUC) of 0.789, global accuracy of 74% for the criterion of a TTP >= 5.4 min) and (2) 1p/19q co-deletion status (AUC of 0.679, global accuracy of 69% for the criterion of a TTP >= 6.9 min). Moreover, the TTP from IDH- gliomas was significantly shorter than those from both IDH+/1p19q- and IDH+/1p19q+ (p <= 0.007). Conclusion Prediction of the molecular features of newly diagnosed gliomas with F-18-FDopa PET and especially of the presence or not of an IDH mutation, may be obtained with dynamic but not with current static uptake parameters.
机译:目的,G-18-FDOPA的GLIOMA宠物成像经常用标准化的摄取值(SUV)的指数来解释。该研究旨在确定动态F-18-FDOPA PET参数的附加值,以预测新诊断的胶质瘤的分子特征。方法回顾性地包括58名患者,该患者经过F-18-FDOPA PET,用于建立胶质瘤的初步诊断,其分子特征根据2016年2016年分类。为了当前静态参数,即肿瘤至正常的脑或肿瘤至纹状体SUV比率和代谢之外,还测试涉及时间 - 峰值(TTP)值和曲线斜率的动态参数。肿瘤体积(MTV)。结果21例IDH突变体没有1P / 19Q共缺失(IDH + / 1P19Q-)胶质瘤,16个IDH突变体,具有1P / 19Q共缺失(IDH + / 1P19Q +)胶质瘤和21个IDH野生型(IDH-)GLIMAS。动态参数使得根据这些分子特征的差异化胶质瘤,而静态参数则没有。特别地,更长的TTP是用于识别(1)IDH突变状态(曲线下的区域(AUC)为0.789的区域的单一最佳独立预测器,全球精度为TTP> = 5.4分钟的标准74%)和(2 )1P / 19Q共同删除状态(AUC为0.679,TTP标准的标准为69%的全球准确性)。此外,IDH-胶质瘤的TTP明显短于IDH + / 1P19Q-和IDH + / 1P19Q +(P <= 0.007)。结论可以通过动态但不具有电流静态吸收参数,获得新诊断的新诊断胶质瘤的分子特征的预测,尤其是IDH突变的存在。

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