Department of Diagnostic Imaging and Nuclear Medicine, Graduate School of Medicine, Kyoto University, 54 Shogoin Kawahara-cho, Sakyo-ku, Kyoto, 606-8507, Japan.
Department of Neurosurgery, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Ann Nucl Med. 2023 Apr;37(4):209-218. doi: 10.1007/s12149-022-01817-6. Epub 2022 Dec 31.
A mobile PET scanner termed flexible PET (fxPET) has been designed to fit existing MRI systems. The purpose of this study was to assess brain imaging with fxPET combined with 3-T MRI in comparison with conventional PET (cPET)/CT.
In this prospective study, 29 subjects with no visible lesions except for mild leukoaraiosis on whole brain imaging underwent 2-deoxy-2-[F]fluoro-D-glucose ([F]FDG) cPET/CT followed by fxPET and MRI. The registration differences between fxPET and MRI and between cPET and CT were compared by measuring spatial coordinates. Three-dimensional magnetization-prepared rapid acquisition gradient-echo T1-weighted imaging (T1WI) was acquired. We applied two methods of attenuation correction to the fxPET images: MR-based attenuation correction, which yielded fxPET; and CT-based attenuation correction, which yielded fxPET. The three PET datasets were co-registered to the T1WI. Following subcortical segmentation and cortical parcellation, volumes of interest were placed in each PET image to assess physiological accumulation in the brain. SUV was obtained and compared between the three datasets. We also visually evaluated image distortion and clarity of fxPET.
Mean misregistration of fxPET/MRI was < 3 mm for each margin. Mean registration differences were significantly larger for fxPET/MRI than for cPET/CT except for the superior margin. There were high correlations between the three PET datasets regarding SUV. On visual evaluation of image quality, the grade of distortion was comparable between fxPET and cPET, and the grade of clarity was acceptable but inferior for fxPET compared with cPET.
fxPET could successfully determine physiological [F]FDG uptake; however, improved image clarity is desirable. In this study, fxPET/MRI at 3-T was feasible for brain imaging.
一种称为灵活 PET(fxPET)的移动 PET 扫描仪旨在与现有的 MRI 系统相匹配。本研究旨在评估与传统 PET(cPET)/CT 相比,使用 fxPET 结合 3-T MRI 进行脑成像的效果。
在这项前瞻性研究中,29 名受试者除了全脑成像上的轻度白质疏松症外没有可见的病变,他们接受了 2-脱氧-2-[F]氟-D-葡萄糖([F]FDG)cPET/CT 检查,然后进行了 fxPET 和 MRI 检查。通过测量空间坐标比较了 fxPET 和 MRI 之间以及 cPET 和 CT 之间的配准差异。采集三维磁化准备快速获取梯度回波 T1 加权成像(T1WI)。我们对 fxPET 图像应用了两种衰减校正方法:基于磁共振的衰减校正,生成 fxPET;基于 CT 的衰减校正,生成 fxPET。将这三个 PET 数据集与 T1WI 进行配准。在进行皮质下分割和皮质分区后,在每个 PET 图像中放置感兴趣区以评估大脑中的生理积聚。获得 SUV,并在三个数据集之间进行比较。我们还对 fxPET 的图像失真和清晰度进行了视觉评估。
fxPET/MRI 的平均配准误差<每个边缘的 3 毫米。除了上边缘,fxPET/MRI 的平均配准差异明显大于 cPET/CT。关于 SUV,三个 PET 数据集之间存在高度相关性。在对图像质量的视觉评估中,fxPET 和 cPET 的失真程度相当,清晰度可以接受,但与 cPET 相比,fxPET 的清晰度稍差。
fxPET 可以成功确定生理[F]FDG 摄取;然而,改善图像清晰度是可取的。在这项研究中,3-T 时的 fxPET/MRI 用于脑成像是可行的。