Preclinical Applications of Magnetic Resonance Imaging in Oncology.

Wilfried Reichardt, Dominik von Elverfeldt
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引用次数: 1

Abstract

The evolving possibilities of molecular imaging (MI) are fundamentally changing the way we look at cancer, with imaging paradigms now shifting away from basic morphological measures toward the longitudinal assessment of functional, metabolic, cellular, and molecular information in vivo. Recent developments of imaging methodology and probe molecules utilizing the vast number of novel animal models of human cancers have enhanced our ability to non-invasively characterize neoplastic tissue and follow anticancer treatments. While preclinical molecular imaging offers a whole palette of excellent methodology to choose from, we will focus on magnetic resonance imaging (MRI) techniques, since they provide excellent molecular imaging capabilities and bear high potential for clinical translation. Prerequisites and consequences of using animal models as surrogates of human cancers in preclinical molecular imaging are outlined. We present physical principles, values, and limitations of MRI as molecular imaging modality and comment on its high potential to non-invasively assess information on metabolism, hypoxia, angiogenesis, and cell trafficking in preclinical cancer research.

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磁共振成像在肿瘤学中的临床前应用。
分子成像(MI)不断发展的可能性从根本上改变了我们看待癌症的方式,成像范式现在从基本的形态学测量转向体内功能、代谢、细胞和分子信息的纵向评估。利用大量新型人类癌症动物模型的成像方法和探针分子的最新发展增强了我们非侵入性表征肿瘤组织和跟踪抗癌治疗的能力。虽然临床前分子成像提供了一整套优秀的方法可供选择,但我们将重点关注磁共振成像(MRI)技术,因为它们提供了出色的分子成像能力,并具有很高的临床转化潜力。概述了在临床前分子成像中使用动物模型作为人类癌症替代品的先决条件和后果。我们介绍了MRI作为分子成像方式的物理原理、价值和局限性,并评论了它在临床前癌症研究中非侵入性评估代谢、缺氧、血管生成和细胞运输信息方面的巨大潜力。
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