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展望混合 PET/MRI 系统的未来设计。

An outlook on future design of hybrid PET/MRI systems.

机构信息

Division of Nuclear Medicine and Molecular Imaging, Geneva University Hospital, CH-1211 Geneva, Switzerland.

出版信息

Med Phys. 2011 Oct;38(10):5667-89. doi: 10.1118/1.3633909.

Abstract

Early diagnosis and therapy increasingly operate at the cellular, molecular, or even at the genetic level. As diagnostic techniques transition from the systems to the molecular level, the role of multimodality molecular imaging becomes increasingly important. Positron emission tomography (PET) and magnetic resonance imaging (MRI) are powerful techniques for in vivo molecular imaging. The inability of PET to provide anatomical information is a major limitation of standalone PET systems. Combining PET and CT proved to be clinically relevant and successfully reduced this limitation by providing the anatomical information required for localization of metabolic abnormalities. However, this technology still lacks the excellent soft-tissue contrast provided by MRI. Standalone MRI systems reveal structure and function but cannot provide insight into the physiology and/or the pathology at the molecular level. The combination of PET and MRI, enabling truly simultaneous acquisition, bridges the gap between molecular and systems diagnosis. MRI and PET offer richly complementary functionality and sensitivity; fusion into a combined system offering simultaneous acquisition will capitalize the strengths of each, providing a hybrid technology that is greatly superior to the sum of its parts. A combined PET/MRI system provides both the anatomical and structural description of MRI simultaneously with the quantitative capabilities of PET. In addition, such a system would allow exploiting the power of MR spectroscopy (MRS) to measure the regional biochemical content and to assess the metabolic status or the presence of neoplasia and other diseases in specific tissue areas. This paper briefly summarizes state-of-the-art developments and latest advances in dedicated hybrid PET/MRI instrumentation. Future prospects and potential clinical applications of this technology will also be discussed.

摘要

早期诊断和治疗越来越多地在细胞、分子甚至遗传水平上进行。随着诊断技术从系统水平向分子水平的转变,多模态分子成像的作用变得越来越重要。正电子发射断层扫描(PET)和磁共振成像(MRI)是用于体内分子成像的强大技术。PET 无法提供解剖信息是独立 PET 系统的主要限制。事实证明,将 PET 与 CT 结合具有临床相关性,并通过提供代谢异常定位所需的解剖信息成功地减少了这一限制。然而,这项技术仍然缺乏 MRI 提供的出色软组织对比。独立的 MRI 系统可以揭示结构和功能,但不能提供对分子水平的生理学和/或病理学的深入了解。PET 和 MRI 的结合,实现真正的同步采集,弥合了分子和系统诊断之间的差距。MRI 和 PET 提供了丰富的互补功能和灵敏度;融合为一个同时采集的联合系统将利用每个系统的优势,提供一种混合技术,大大优于其各个部分的总和。PET/MRI 联合系统同时提供 MRI 的解剖和结构描述以及 PET 的定量能力。此外,这样的系统还可以利用磁共振波谱(MRS)的强大功能来测量区域生化含量,并评估特定组织区域的代谢状态或肿瘤和其他疾病的存在。本文简要总结了专用混合 PET/MRI 仪器的最新发展和最新进展。还将讨论该技术的未来前景和潜在临床应用。

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