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Evaluation of Cross-Calibrated 68Ge/68Ga Phantoms for Assessing PET/CT Measurement Bias in Oncology Imaging for Single- and Multicenter Trials

机译:用于评估单中心和多中心试验的肿瘤成像中PET / CT测量偏差的交叉校准68Ge / 68Ga幻象的评估

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摘要

Quantitative PET imaging is an important tool for clinical trials evaluating the response of cancers to investigational therapies. The standardized uptake value, used as a quantitative imaging biomarker, is dependent on multiple parameters that may contribute bias and variability. The use of long-lived, sealed PET calibration phantoms offers the advantages of known radioactivity activity concentration and simpler use than aqueous phantoms. We evaluated scanner and dose calibrator sources from two batches of commercially available kits, together at a single site and distributed across a local multicenter PET imaging network. We found that radioactivity concentration was uniform within the phantoms. Within the regions of interest drawn in the phantom images, coefficients of variation of voxel values were less than 2%. Across phantoms, coefficients of variation for mean signal were close to 1%. Biases of the standardized uptake value estimated with the kits varied by site and were seen to change in time by approximately ±5%. We conclude that these biases cannot be assumed constant over time. The kits provide a robust method to monitor PET scanner and dose calibrator biases, and resulting biases in standardized uptake values.
机译:PET定量成像是评估癌症对研究疗法反应的临床试验的重要工具。用作定量成像生物标记物的标准化摄取值取决于可能导致偏差和变异性的多个参数。使用长寿命,密封的PET校准体模具有已知放射性活度浓度的优点,并且比水性体模更易于使用。我们在一个站点上评估了来自两批市售套件的扫描仪和剂量校准器源,一起在一个本地多中心PET成像网络中进行了分布。我们发现体模中的放射性浓度是均匀的。在幻影图像中绘制的感兴趣区域内,体素值的变异系数小于2%。整个模型中,平均信号的变异系数接近1%。试剂盒估计的标准化吸收值偏差随地点而异,并且随时间变化约±5%。我们得出的结论是,这些偏差不能随时间推移而定。该套件提供了一种强大的方法来监控PET扫描仪和剂量校准器的偏倚,以及由此产生的标准摄取值偏倚。

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