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Impact of region-of-interest delineation methods, reconstruction algorithms, and intra- and inter-operator variability on internal dosimetry estimates using PET

机译:感兴趣区域描绘方法,重建算法以及操作员内和操作员间变异性对使用pET的内部剂量测定估计的影响

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摘要

Purpose Human dosimetry studies play a central role in radioligand development for positron emission tomography (PET). Drawing regions of interest (ROIs) on the PET images is used to measure the dose in each organ. In the study aspects related to ROI delineation methods were evaluated for two radioligands of different biodistribution (intestinal vs urinary). Procedures PET images were simulated from a human voxel-based phantom. Several ROI delineation methods were tested: antero-posterior projections (AP), 3D sub-samples of the organs (S), and a 3D volume covering the whole-organ (W). Inter- and intra-operator variability ROI drawing was evaluated by using human data. Results The effective dose estimates using S and W methods were comparable to the true values. AP methods overestimated (49 %) the dose for the radioligand with intestinal biodistribution. Moreover, the AP method showed the highest inter-operator variability: 11 ± 1 %. Conclusions The sub-sampled organ method showed the best balance between quantitative accuracy and inter- and intra-operator variability.
机译:目的人体剂量学研究在正电子发射断层扫描(PET)的放射性配体发展中起着核心作用。 PET图像上的绘制感兴趣区域(ROI)用于测量每个器官中的剂量。在研究中,针对两种具有不同生物分布的放射性配体(肠道与尿液)评估了与ROI描绘方法相关的方面。程序从基于人体素的人体模型模拟PET图像。测试了几种ROI描绘方法:前后投影(AP),器官的3D子样本(S)和覆盖整个器官的3D体积(W)。运营商之间和运营商内部的可变性ROI图通过使用人工数据进行评估。结果使用S和W方法估算的有效剂量与真实值相当。 AP方法高估了(49%)具有肠道生物分布的放射性配体的剂量。此外,AP方法显示出最高的操作员间变异性:11±1%。结论二次采样器官法显示出定量准确性与操作者之间和操作者内部变异之间的最佳平衡。

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