Herzog H, Langen K-J, Weirich C, Rota Kops E, Kaffanke J, Tellmann L, Scheins J, Neuner I, Stoffels G, Fischer K, Caldeira L, Coenen H H, Shah N J
Institute of Neuroscience and Medicine - 4, Forschungszentrum Jülich, 52425 Jülich, Germany.
Nuklearmedizin. 2011;50(2):74-82. doi: 10.3413/Nukmed-0347-10-09. Epub 2011 Feb 2.
After the successful clinical introduction of PET/CT, a novel hybrid imaging technology combining PET with the versatile attributes of MRI is emerging. At the Forschungszentrum Jülich, one of four prototypes available worldwide combining a commercial 3T MRI with a newly developed BrainPET insert has been installed, allowing simultaneous data acquisition with PET and MRI. The BrainPET is equipped with LSO crystals of 2.5 mm width and Avalanche photodiodes (APD) as readout electronics. Here we report on some performance characteristics obtained by phantom studies and also on the initial BrainPET studies on various patients as compared with a conventional HR+ PET-only scanner.
MATERIAL, METHODS: The radiotracers [18F]-fluoro-ethyl-tyrosine (FET), [11C]-flumazenil and [18F]-FP-CIT were applied.
Comparing the PET data obtained with the BrainPET to those of the HR+ scanner demonstrated the high image quality and the superior resolution capability of the BrainPET. Furthermore, it is shown that various MR images of excellent quality could be acquired simultaneously with BrainPET scans without any relevant artefacts.
DISCUSSION, CONCLUSION: Initial experiences with the hybrid MRI/BrainPET indicate a promising basis for further developments of this unique technique allowing simultaneous PET imaging combined with both anatomical and functional MRI.
在PET/CT成功应用于临床之后,一种将PET与MRI的多种特性相结合的新型混合成像技术正在兴起。在于利希研究中心,安装了全球仅有的四个原型机之一,它将商用3T MRI与新开发的BrainPET插件相结合,可同时进行PET和MRI数据采集。BrainPET配备了宽度为2.5毫米的LSO晶体和作为读出电子设备的雪崩光电二极管(APD)。在此,我们报告通过体模研究获得的一些性能特征,以及与传统仅HR+ PET扫描仪相比,对不同患者进行的初步BrainPET研究结果。
应用放射性示踪剂[18F]-氟代乙基酪氨酸(FET)、[11C]-氟马西尼和[18F]-FP-CIT。
将BrainPET获得的PET数据与HR+扫描仪的数据进行比较,显示出BrainPET具有高图像质量和卓越的分辨率能力。此外,结果表明,在进行BrainPET扫描时可同时获取各种高质量的MR图像,且无任何相关伪影。
MRI/BrainPET混合成像的初步经验表明,这种独特技术进一步发展具有良好的基础,可实现PET成像与解剖学和功能MRI的同时结合。