University of Tuebingen, Laboratory for Preclinical Imaging and Imaging Technology of the Werner Siemens-Foundation, Roentgenweg 13, 72076 Tuebingen, Germany.
Technol Cancer Res Treat. 2010 Feb;9(1):5-20. doi: 10.1177/153303461000900102.
The combination of PET and MR in one imaging device has certain advantages over conventional imaging modalities. These include: no additional radiation dose from the MR, superior soft tissue contrast and a multitude of tracers for PET. Certain technical challenges exist when designing a PET/MR system. On the one hand these stem from the presence of the strong MR magnetic field and the addition of PET components to the MR system. Different approaches are presented to overcome these technical obstacles ranging from long optical fibers to systems that use semiconductor light detectors for photon counting. The applications of combined PET/MR are profound in the field of oncology and allow imaging of the four main processes in cancer formation: apoptosis resistance, angiogenesis, proliferation and metastasis. PET/MR has also many clinical and research applications in neurology and cardiology. Alternative techniques such as image fusion, hyperpolarized imaging, 17O imaging and whole body diffusion are discussed in respect to their relevance regarding PET/MR. Simultaneous multifunctional and anatomical imaging using PET/MR has a great potential to impact biomedical imaging in research and clinic.
正电子发射断层扫描(PET)和磁共振成像(MR)在一台成像设备中的结合相对于传统成像方式具有一定优势。这些优势包括:MR 无额外辐射剂量,软组织对比度更高,并且有多种 PET 示踪剂可供选择。在设计 PET/MR 系统时存在一定的技术挑战。一方面,这些挑战源于强磁场的存在以及将 PET 组件添加到 MR 系统中。为了克服这些技术障碍,已经提出了不同的方法,包括使用长光纤和使用半导体光探测器进行光子计数的系统。在肿瘤学领域,联合 PET/MR 的应用非常广泛,可以对癌症形成的四个主要过程进行成像:抗凋亡、血管生成、增殖和转移。PET/MR 在神经病学和心脏病学领域也有许多临床和研究应用。本文还讨论了图像融合、极化成像、17O 成像和全身扩散等替代技术,以及它们与 PET/MR 的相关性。使用 PET/MR 进行同时多功能和解剖成像具有很大的潜力,可以影响研究和临床中的生物医学成像。