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Establishment of an Analysis Tool for Preclinical Evaluation of PET Radiotracers for In-Vivo Imaging in Neurological Diseases

机译:建立一种神经疾病中宠物放射性机构临床前型宠物放射性机构的分析工具

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Aim: Analysis of in vivo acquired data remains a challenging issue in preclinical studies using positron emission tomography (PET). The aim of this study is the implementation of a tool which should allow a semi-automated analysis of PET data independently from the administrated radiotracer and the imaging modality for preclinical investigations. By registering anatomical data sets, it additionally shall offer a more detailed data analysis allowing a statistical analysis also for smaller sub-regions. Materials and methods: Data used for primarily implementation of the tool were acquired on a Siemens uPET scanner (Inveon~R) and were based on the investigation of the glucose metabolism in a subarachnoid hemorrhage (SAH) model in Sprague Dawley rats in vivo using FDG-PET. We used the software programs Matlab (version 2016a) and Fiji for data analysis and visualization. In addition, statistical tests were performed in order to determine regions with trending/significant differences in the SUV of sham and SAH animals. Results: Following data import, data were separated into predefined time periods and artefacts were eliminated. Afterwards, a volume of interest (VOI) was defined by the threshold of the Standardized-Uptake-Value (SUV). Before masking each data set with its segmented VOI, all data sets were intensity-normalized, eliminating the full body intensity differences caused by the different amount of injected activity. After masking, data sets of the sham operated animals were registered on the best orientated sham data set, reduced on the VOI and shifted into the center of the 3D space. By averaging aligned data sets based on all data sets from seven sham rats, we generated a FDG-template of a Sprague-Dawley rat brain. This PET data template was the basis for the evaluation of registered data sets. Afterwards, an anatomical MR-based atlas of the brain of Sprague-Dawley rat was co-registered on the template for a better sub-classification of the acquired data. Conclusion: These preliminary data show that the described method represents a very promising tool for data analysis in the preclinical evaluations of PET radiotracers for neurological applications.
机译:目的:体内收购数据的分析仍然是使用正电子发射断层扫描(PET)的临床前研究中的具有挑战性的问题。本研究的目的是实现一种工具,其应该允许独立于施用的放射性机构和用于临床前调查的成像模型的半自动分析PET数据。通过注册解剖数据集,另外应提供更详细的数据分析,允许统计分析对较小的子区域。材料和方法:用于主要实施该工具的数据在西门子Upet扫描仪(inveon〜R)上获得,并基于使用FDG在Sprague Dawley大鼠中蛛网膜下腔出血(SAH)模型中葡萄糖代谢的研究-宠物。我们使用该软件程序MATLAB(版本2016A)和FIJI进行数据分析和可视化。此外,进行统​​计测试,以便在假和Sah动物的SUV中确定具有趋势/显着差异的区域。结果:在数据导入之后,数据分为预定义的时间段,消除了人工制品。之后,通过标准化吸收值(SUV)的阈值来定义感兴趣的兴趣(VOI)。在用其分段VOI屏蔽每个数据集之前,所有数据集都是强度标准化的,消除了由不同量的注射活动引起的全身强度差异。在掩蔽之后,假手术动物的数据集被登记在最佳定向的假数据集上,减少在VOI上并移入3D空间的中心。通过基于来自七只假大鼠的所有数据集的平均对齐数据集,我们生成了Sprague-Dawley大鼠脑的FDG模板。该PET数据模板是评估注册数据集的基础。然后,在模板上共登记的Sprague-Dawley大鼠的脑的基于解剖学的基于脑的地图,以获得更好的所获取数据的子分类。结论:这些初步数据表明,所述方法代表了宠物放射体制酶对神经系统应用的临床前评价中的数据分析的非常有前途的工具。

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