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全身PET/MRI:肿瘤影像学的未来。

Whole-body PET/MRI: the future in oncological imaging.

作者信息

Seemann Marcus D

机构信息

Department of Nuclear Medicine, Technical University, Munich, Ismaninger Strasse 22, D-81675 Munich, Germany.

出版信息

Technol Cancer Res Treat. 2005 Oct;4(5):577-82. doi: 10.1177/153303460500400512.

Abstract

Positron emission tomography (PET) facilitates the evaluation of molecular aspects and metabolic alterations that are fundamental in detecting of malignancies, characterization of tumor stage and assessment of therapeutical response, and tumor recurrence. The main advantage of PET is its high sensitivity in identifying of areas of cancerous involvement at an early stage. In general, the accelerated radiotracer activity occurs before anatomical structure changes. The main difficulty with PET is the lack of an anatomical reference frame. Magnetic resonance imaging (MRI) is an excellent morphological imaging modality with a high anatomical resolution. Whole-body MRI produce large amounts of image data, resulting in the possibility of overlooking subtle pathological findings. The fusion of PET with MRI can compensate for their disadvantages and therefore offers several advantages in comparison to PET or MRI alone. The combination of these two excellent diagnostic imaging modalities into a single scanner improves the diagnostic accuracy by facilitating the accurate registration of molecular aspects and metabolic alterations of the diseases with exact correlation to anatomical findings and morphological information. Whole-body PET/MRI is a very promising diagnostic modality for oncological imaging and for use in cancer screening in the decades to come due to the considerably lower radiation exposure in contrast to PET/CT and the high soft tissue resolution of MRI.

摘要

正电子发射断层扫描(PET)有助于评估分子层面和代谢改变,这些对于检测恶性肿瘤、确定肿瘤分期、评估治疗反应以及肿瘤复发至关重要。PET的主要优势在于其在早期识别癌灶累及区域方面具有高灵敏度。一般来说,放射性示踪剂活性加速出现于解剖结构改变之前。PET的主要难点在于缺乏解剖参照框架。磁共振成像(MRI)是一种具有高解剖分辨率的出色形态学成像方式。全身MRI会产生大量图像数据,从而有可能忽略细微的病理发现。PET与MRI融合可弥补它们的不足,因此与单独使用PET或MRI相比具有若干优势。将这两种出色的诊断成像方式整合到一台扫描仪中,通过促进疾病分子层面和代谢改变与解剖学发现及形态学信息的精确关联,实现准确配准,从而提高诊断准确性。与PET/CT相比,全身PET/MRI辐射暴露显著更低,且具有MRI高软组织分辨率,在未来几十年里,它是一种非常有前景的肿瘤成像诊断方式,也可用于癌症筛查。

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