Max Planck Institute for Metabolism Research, Cologne, Germany.
Eur J Neurol. 2017 Oct;24(10):1255-e70. doi: 10.1111/ene.13385. Epub 2017 Aug 11.
Neuroimaging plays a significant role in the diagnosis of intracranial tumours, especially brain gliomas, and must consist of an assessment of location and extent of the tumour and of its biological activity. Therefore, morphological imaging modalities and functional, metabolic or molecular imaging modalities should be combined for primary diagnosis and for following the course and evaluating therapeutic effects. Magnetic resonance imaging (MRI) is the gold standard for providing detailed morphological information and can supply some additional insights into metabolism (MR spectroscopy) and perfusion (perfusion-weighted imaging) but still has limitations in identifying tumour grade, invasive growth into neighbouring tissue and treatment-induced changes, as well as recurrences. These insights can be obtained by various positron emission tomography (PET) modalities, including imaging of glucose metabolism, amino acid uptake and nucleoside uptake. Diagnostic accuracy can benefit from coregistration of PET results and MRI, combining high-resolution morphological images with biological information. These procedures are optimized by the newly developed combination of PET and MRI modalities, permitting the simultaneous assessment of morphological, functional, metabolic and molecular information on the human brain.
神经影像学在颅内肿瘤的诊断中起着重要作用,特别是脑胶质瘤,必须包括对肿瘤的位置和范围及其生物学活性的评估。因此,应将形态成像方式和功能、代谢或分子成像方式相结合,用于初步诊断和监测病程以及评估治疗效果。磁共振成像(MRI)是提供详细形态信息的金标准,还可以提供一些关于代谢(磁共振波谱)和灌注(灌注加权成像)的额外信息,但在识别肿瘤分级、向邻近组织浸润和治疗引起的变化以及复发方面仍存在局限性。这些信息可以通过各种正电子发射断层扫描(PET)方式获得,包括葡萄糖代谢、氨基酸摄取和核苷摄取的成像。通过将 PET 结果与 MRI 进行配准,可以将高分辨率形态图像与生物学信息相结合,从而提高诊断准确性。这些程序通过新开发的 PET 和 MRI 方式的组合得到优化,允许同时评估人类大脑的形态、功能、代谢和分子信息。