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用于定量小动物正电子发射断层显像(PET)成像的通用电气(GE)eXplore VISTA系统的蒙特卡罗模拟。

Monte Carlo simulation of a GE eXplore VISTA system for quantitative small animal PET imaging.

作者信息

Yang Ching-Ching, Yu Jianhua, Lee Jason J S, Tsui Benjamin M W

机构信息

Department of Biomedical Imaging and Radiological Sciences, National Yang-Ming University, Taipei, Taiwan.

出版信息

Nucl Med Commun. 2010 Jan;31(1):32-8. doi: 10.1097/mnm.0b013e328330361d.

Abstract

OBJECTIVE

We aim to establish an evaluation platform for the GE eXplore VISTA small animal positron emission tomography (PET) scanner, a dual layer phoswich system, by using Monte Carlo simulation.

METHODS

We developed a detection model based on the Geant4 Application for Tomographic Emission to realistically reproduce the physics of PET, the scanner configuration, and the data collecting system of an eXplore VISTA system. For verification purpose, several different physical phantoms were simulated to perform evaluation tests, including sensitivity, spatial resolution, scatter fraction, and count rate performance, which were compared with an actual scanner. After the experimental validation, our detection model was applied to assess the quantification loss in the reconstructed images associated with photon attenuation, photon scatter, and random coincidences.

RESULTS

A simulated sensitivity profile as a function of 18F point source axial position was fitted to the measured results. In terms of spatial resolution, agreement was within 10-18% for the point source at various locations. The simulated and measured scatter fractions differed by less than 4.3 and 5.2% for the physical mouse and rat phantoms, respectively. The count rate performance of our model was matched by the measured results, up to the peak activity concentration of 455 kBq/ml for the mouse-sized phantom and 141 kBq/ml for the rat-sized phantom. Finally, we found that photon attenuation is the dominant physical degrading factor in quantitative analysis (> 13.4%).

CONCLUSION

These results suggested that the proposed detection model is able to produce realistic data from the eXplore VISTA system with knowing the ground truth, thus facilitating its evaluation for small animal PET studies.

摘要

目的

我们旨在通过蒙特卡罗模拟为GE eXplore VISTA小动物正电子发射断层扫描仪(PET)(一种双层磷光屏系统)建立一个评估平台。

方法

我们基于用于断层发射的Geant4应用程序开发了一个检测模型,以逼真地再现PET的物理过程、扫描仪配置以及eXplore VISTA系统的数据采集系统。为了进行验证,模拟了几种不同的物理体模以进行评估测试,包括灵敏度、空间分辨率、散射分数和计数率性能,并与实际扫描仪进行比较。经过实验验证后,我们的检测模型被用于评估重建图像中与光子衰减、光子散射和随机符合相关的定量损失。

结果

将作为18F点源轴向位置函数的模拟灵敏度曲线与测量结果进行拟合。在空间分辨率方面,不同位置的点源的一致性在10%-18%以内。对于物理小鼠和大鼠体模,模拟和测量的散射分数分别相差不到4.3%和5.2%。我们模型的计数率性能与测量结果相匹配,对于小鼠尺寸的体模,峰值活度浓度可达455 kBq/ml,对于大鼠尺寸的体模,峰值活度浓度可达141 kBq/ml。最后,我们发现光子衰减是定量分析中主要的物理降解因素(>13.4%)。

结论

这些结果表明,所提出的检测模型能够在已知真实情况的前提下从eXplore VISTA系统生成逼真的数据,从而便于对小动物PET研究进行评估。

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