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Using magnetic resonance imaging and spectroscopy in cancer diagnostics and monitoring: Preclinical and clinical approaches

机译:使用磁共振成像和光谱学进行癌症诊断和监测:临床前和临床方法

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Nuclear Magnetic Resonance (MR) based imaging has become an integrated domain in today's oncology research and clinical management of cancer patients. MR is a unique imaging modality among numerous other imaging modalities by providing access to anatomical, physiological, biochemical and molecular details of tumor with excellent spatial and temporal resolutions. In this review we will cover established and investigational MR imaging (MRI) and MR spectroscopy (MRS) techniques used for cancer imaging and demonstrate wealth of information on tumor biology and clinical applications MR techniques offer for oncology research both in preclinical and clinical settings. Emphasis is given not only to the variety of information which may be obtained but also the complementary nature of the techniques. This ability to determine tumor type, grade, invasiveness, degree of hypoxia, microvacular characteristics and metabolite phenotype, has already profoundly transformed oncology research and patient management. It is evident from the data reviewed that MR techniques will play a key role in uncovering molecular fingerprints of cancer, developing targeted treatment strategies and assessing responsiveness to treatment for personalized patient management, thereby allowing rapid translation of imaging research data into the benefit of clinical oncology.
机译:基于核磁共振(MR)的成像已成为当今癌症患者的肿瘤学研究和临床管理中不可或缺的领域。 MR是众多其他成像方式中的独特成像方式,可提供具有出色的时空分辨率的肿瘤解剖,生理,生化和分子细节信息。在这篇综述中,我们将介绍用于癌症成像的成熟和研究性MR成像(MRI)和MR光谱学(MRS)技术,并展示有关MR生物学为临床前和临床环境中的肿瘤学研究提供的大量肿瘤生物学和临床应用信息。重点不仅是可以获得的各种信息,而且还强调技术的互补性。这种确定肿瘤类型,等级,侵袭性,缺氧程度,微血管特征和代谢物表型的能力已经深刻地改变了肿瘤学研究和患者管理。从所审查的数据中可以明显看出,MR技术将在发现癌症的分子指纹,制定针对性的治疗策略以及评估针对个性化患者管理的治疗反应方面发挥关键作用,从而使影像研究数据快速转化为临床肿瘤学的益处。 。

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