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首页> 外文期刊>NeuroImage >OS-EM and FBP reconstructions at low count rates: effect on 3D PET studies of (11C) WAY-100635.
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OS-EM and FBP reconstructions at low count rates: effect on 3D PET studies of (11C) WAY-100635.

机译:低计数率的OS-EM和FBP重建:对(11C)WAY-100635的3D PET研究的影响。

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11C-labeled neuroreceptor ligands frequently require long scan durations to quantify ligand-receptor binding. In this paper, we compare the accuracy of two three-dimensional (3D) positron emission tomography (PET) reconstructions: ordered-subset expectation-maximization (OS-EM) versus filtered backprojection (FBP) under low count rate conditions exhibited by 11C neuroreceptor studies. Data were obtained from a dynamic 11C phantom acquisition as well as six dynamic human [11C] WAY-100635 studies, all acquired in 3D mode using the EXACT HR+ PET scanner. Model-based scatter correction of the phantom datum was found to overcorrect in low count rate situations producing a negative bias in FBP reconstruction and a positive bias in OS-EM reconstruction, the OS-EM bias attributed to the non-negativity constraint of sinogram values. In the phantom OS-EM and FBP, reconstruction bias occurred at activities less than 25 Bq/cm3. In the human cerebellum, OS-EM deviated from FBP at activities less than 50 Bq/cm3. Thetotal volume of distribution (VT), as determined from the metabolite corrected arterial input function and a two-tissue compartment kinetic model, was more sensitive to the positive bias of OS-EM than the negative bias of FBP at low count rates. To avoid reconstruction bias with 3D PET studies using the HR+, the scan duration should be limited so as to yield a final non-decay-corrected activity concentration of no less than 50 Bq/cm3. In neuroreceptor studies, if such a low count rate cannot be avoided, FBP reconstruction is preferable to OS-EM to estimate VT.
机译:11C标记的神经受体配体经常需要较长的扫描时间以量化配体-受体结合。在本文中,我们比较了11C神经受体在低计数率条件下进行的两个三维(3D)正电子发射断层扫描(PET)重建的准确性:有序子集期望最大化(OS-EM)与滤波反投影(FBP)学习。数据来自动态11C幻像采集以及六个动态人体[11C] WAY-100635研究,所有研究均使用EXACT HR + PET扫描仪以3D模式采集。发现基于模型的幻像数据散点校正在低计数率情况下会过度校正,从而在FBP重建中产生负偏差,在OS-EM重建中产生正偏差,OS-EM偏差归因于正弦图值的非负约束。在幻影OS-EM和FBP中,重建偏差发生在活动低于25 Bq / cm3时。在人小脑中,OS-EM在低于50 Bq / cm3的活动下偏离了FBP。由代谢物校正的动脉输入功能和两组织腔室动力学模型确定的总分布体积(VT)对OS-EM的正偏差比FBP在低计数率下的负偏差更敏感。为了避免使用HR +进行3D PET研究的重建偏倚,应限制扫描持续时间,以使最终的非衰减校正活性浓度不小于50 Bq / cm3。在神经受体研究中,如果无法避免如此低的计数率,则FBP重建优于OS-EM来估计VT。

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