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首页> 外文期刊>The Journal of Veterinary Medical Science >FDG uptake of normal canine brain assessed by high-resolution research tomography-positron emission tomography and 7 T-magnetic resonance imaging.
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FDG uptake of normal canine brain assessed by high-resolution research tomography-positron emission tomography and 7 T-magnetic resonance imaging.

机译:高分辨率犬断层扫描-正电子发射断层扫描和7 T磁共振成像技术评估了正常犬脑的FDG摄取。

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The purpose of this study was to assess the normal distribution of 18F-fluoro-2-deoxy-D-glucose (FDG) uptake of canine brain structures using a high-resolution research tomography-positron emission tomography (HRRT-PET) and 7 T-magnetic resonance imaging (MRI) fusion system. FDG-PET and T2-weighted MRI of the brain were performed on 4 healthy laboratory beagle dogs. On MRI, regions of interests (ROIs) were manually drawn over 51 intracranial structures, including nine gross structures and 42 detailed structures. Relative standard uptake value ratio (rSUV=SUV of ROI/SUV of whole brain) was calculated for each ROI. The HRRT-PET and 7 T-MRI fusion imaging system demonstrated significant differences in glucose metabolism among various intracranial structures. Among gross structures, the midbrain and the pons and medulla oblongata had the highest uptake (rSUV: 1.12+or-0.03) and lowest uptake (rSUV: 0.90+or-0.06) of FDG, respectively. When rSUVs were calculated on detailed regions, the caudal colliculus and the longitudinal fibers of pons had the highest (rSUV: 1.62+or-0.05) and the lowest (rSUV: 0.63+or-0.03) glucose metabolism, respectively. Because the high resolution of PET-MRI fusion images provided clearly identifiable metabolic activities of canine brain, the HRRT-PET and 7 T-MRI fusion imaging might be a good tool for evaluation of intracranial diseases in canines.
机译:这项研究的目的是使用高分辨率的研究X射线断层摄影术-正电子发射断层摄影术评估犬脑结构摄取 18 F-氟-2-脱氧-D-葡萄糖(FDG)的正态分布(HRRT-PET)和7 T磁共振成像(MRI)融合系统。在4只健康的实验室比格犬上进行了FDG-PET和T2加权的脑部MRI检查。在MRI上,手动绘制了51个颅内结构的感兴趣区域(ROI),其中包括9个总体结构和42个详细结构。计算每个ROI的相对标准摄取值比(rSUV = ROI的SUV /全脑的SUV)。 HRRT-PET和7 T-MRI融合成像系统显示出各种颅内结构之间葡萄糖代谢的显着差异。在总体结构中,FDG的中脑,脑桥和延髓分别具有最高的摄取(rSUV:1.12+或-0.03)和最低的摄取(rSUV:0.90+或-0.06)。当在详细区域上计算rSUVs时,尾部丘脑和pons的纵向纤维分别具有最高的葡萄糖代谢(rSUV:1.62 + or-0.05)和最低的(rSUV:0.63 + or-0.03)。由于高分辨率的PET-MRI融合图像可以清晰地识别犬脑的代谢活动,因此HRRT-PET和7 T-MRI融合成像可能是评估犬颅内疾病的好工具。

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