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Reproducibility of Quantitative Brain Imaging Using a PET-Only and a Combined PET/MR System

机译:使用PET-of PET和组合PET / MR系统的定量脑成像的再现性

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摘要

The purpose of this study was to test the feasibility of migrating a quantitative brain imaging protocol from a positron emission tomography (PET)-only system to an integrated PET/MR system. Potential differences in both absolute radiotracer concentration as well as in the derived kinetic parameters as a function of PET system choice have been investigated. Five healthy volunteers underwent dynamic (R)-[11C]verapamil imaging on the same day using a GE-Advance (PET-only) and a Siemens Biograph mMR system (PET/MR). PET-emission data were reconstructed using a transmission-based attenuation correction (AC) map (PET-only), whereas a standard MR-DIXON as well as a low-dose CT AC map was applied to PET/MR emission data. Kinetic modeling based on arterial blood sampling was performed using a 1-tissue-2-rate constant compartment model, yielding kinetic parameters (K1 and k2) and distribution volume (VT). Differences for parametric values obtained in the PET-only and the PET/MR systems were analyzed using a 2-way Analysis of Variance (ANOVA). Comparison of DIXON-based AC (PET/MR) with emission data derived from the PET-only system revealed average inter-system differences of −33 ± 14% (p < 0.05) for the K1 parameter and −19 ± 9% (p < 0.05) for k2. Using a CT-based AC for PET/MR resulted in slightly lower systematic differences of −16 ± 18% for K1 and −9 ± 10% for k2. The average differences in VT were −18 ± 10% (p < 0.05) for DIXON- and −8 ± 13% for CT-based AC. Significant systematic differences were observed for kinetic parameters derived from emission data obtained from PET/MR and PET-only imaging due to different standard AC methods employed. Therefore, a transfer of imaging protocols from PET-only to PET/MR systems is not straightforward without application of proper correction methods.Clinical Trial Registration:www.clinicaltrialsregister.eu, identifier 2013-001724-19
机译:本研究的目的是测试从正电子发射断层扫描(PET)-Only系统迁移定量脑成像协议的可行性到集成的PET / MR系统。研究了绝对放射性机构浓度以及作为PET系统选择的函数的绝对辐射游粉蛋白浓度以及衍生动力学参数的潜在差异。五个健康的志愿者接受了动态(R) - [11C] Verapamil成像在同一天使用Ge-Advance(Pet-Pet)和西门子传记MMR系统(PET / MR)。使用基于透射的衰减校正(AC)地图(PET)来重建宠物发射数据,而标准MR-DIXON以及低剂量CT AC MAP应用于PET / MR发射数据。使用1组织-2速率恒定隔室模型进行基于动脉血采样的动力学建模,产生动力学参数(K1和K2)和分布体积(VT)。使用差异的双向分析(ANOVA)分析在PET仅在PET和PET / MR系统中获得的参数值的差异。基于Dixon的AC(PET / MR)与唯一的宠物系统的发射数据的比较显示K1参数的平均系统间差异为-33±14%(P <0.05),-19±9%(P <0.05)对于K2。使用基于CT的PET / MR的AC导致K1和K2的K1和-9±10%略微较低的系统差异-16±18%。对于CT的AC,Dixon-18±10%(P <0.05)的平均差异为-18±10%(P <0.05)。由于采用不同的标准AC方法,从PET / MR和仅PET的宠物成像获得的发射数据衍生的动力学参数观察到显着的系统差异。因此,从PET-PET-PET / MR系统转移成像协议在不应用适当的校正方法的情况下并不简单。注册:www.clinicaltrialsregister.eu,标识符2013-001724-19

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