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神经肿瘤学中的代谢与分子成像

Metabolic and molecular imaging in neuro-oncology.

作者信息

Herholz Karl, Coope David, Jackson Alan

机构信息

Wolfson Molecular Imaging Centre, University of Manchester, Oxford Road, Manchester, UK.

出版信息

Lancet Neurol. 2007 Aug;6(8):711-24. doi: 10.1016/S1474-4422(07)70192-8.

Abstract

Techniques for human brain imaging have undergone rapid developments in recent years. Technological progress has enabled the assessment of many physiological parameters in vivo that are highly relevant for tumour grading, tissue characterisation, definition of the extent and infiltration of tumours, and planning and monitoring of therapy. In this review, we provide a brief overview of advanced MRI and molecular-tracer techniques that have many potential clinical uses. A broad range of techniques, including dynamic MRI, PET, and single photon emission computed tomography, provide measurements of various features of tumour blood flow and microvasculature. Using PET to measure glucose consumption enables visualisation of tumour metabolism, and magnetic resonance spectroscopy techniques provide complementary information on energy metabolism. Changes in protein and DNA synthesis can be assessed through uptake of labelled amino acids and nucleosides. Advanced imaging techniques can be used to assess tumour malignancy, extent, and infiltration, and might provide diagnostic clues to distinguish between lesion types and between recurrent tumour and necrosis. Stereotactic biopsies should be taken from the most malignant part of tumours, which can be identified by changes in microvascular structure and metabolic activity. Functional and metabolic imaging can improve the planning and monitoring of radiation and chemotherapy and contribute to the development of new therapies.

摘要

近年来,人类脑成像技术取得了快速发展。技术进步使得人们能够在体内评估许多与肿瘤分级、组织特征描述、肿瘤范围及浸润的界定以及治疗规划与监测高度相关的生理参数。在本综述中,我们简要概述了具有许多潜在临床用途的先进磁共振成像(MRI)和分子示踪技术。包括动态MRI、正电子发射断层扫描(PET)和单光子发射计算机断层扫描在内的多种技术,可对肿瘤血流和微血管系统的各种特征进行测量。利用PET测量葡萄糖消耗能够实现肿瘤代谢的可视化,而磁共振波谱技术可提供有关能量代谢的补充信息。蛋白质和DNA合成的变化可通过标记氨基酸和核苷的摄取来评估。先进的成像技术可用于评估肿瘤的恶性程度、范围和浸润情况,并可能为区分病变类型以及复发性肿瘤与坏死提供诊断线索。立体定向活检应取自肿瘤最恶性的部分,这可通过微血管结构和代谢活性的变化来确定。功能和代谢成像可改善放疗和化疗的规划与监测,并有助于新疗法的开发。

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