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Clinical perspectives of hybrid proton-fluorine magnetic resonance imaging and spectroscopy

机译:混合质子-氟磁共振成像和光谱学的临床观点

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摘要

The number of applications of fluorine 19 (F) magnetic resonance (MR) imaging and spectroscopy in biomedical and clinical research is steadily growing. The 100% natural abundance of fluorine and its relatively high sensitivity for MR (83% to that of protons) make it an interesting nucleus for a wide range of MR applications. Fluorinated contrast media have a number of advantages over the conventionally used gadolinium-based or iron-based contrast agents. The absence of an endogenous fluorine background intensity in the human body facilitates reliable quantification of fluorinated contrast medium or drugs. Anatomy can be visualized separately with proton MR imaging, creating the application of hybrid hydrogen 1 (H)/19F MR imaging. The availability of 2 channels (ie, the H and F channels) enables dual-targeted molecular imaging. Recently, novel developments have emerged on fluorine-based contrast media in preclinical studies and imaging techniques. The developments in fluorine MR seem promising for clinical applications, with contributions in therapy monitoring, assessment of lung function, angiography, and molecular imaging. This review outlines the translation from recent advances in preclinical MR imaging and spectroscopy to future perspectives of clinical hybrid H/F MR imaging applications.
机译:氟19(F)磁共振(MR)成像和光谱在生物医学和临床研究中的应用数量正在稳步增长。氟的100%自然丰度及其对MR的相对较高的敏感性(质子的敏感性为83%),使其成为广泛的MR应用领域中令人感兴趣的核心。与常规使用的over基或铁基造影剂相比,氟化造影剂具有许多优势。人体中不存在内源性氟本底强度,有助于可靠地定量氟化造影剂或药物。质子MR成像可单独显示解剖结构,从而创建混合氢1(H)/ 19F MR成像的应用。 2个通道(即H和F通道)的可用性实现了双靶分子成像。最近,在临床前研究和成像技术中基于氟的造影剂出现了新的发展。氟MR的发展似乎在临床应用中很有前途,在治疗监测,肺功能评估,血管造影和分子成像方面做出了贡献。这篇综述概述了从临床前MR成像和光谱学的最新进展到临床混合H / F MR成像应用的未来观点的翻译。

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