磁共振成像
核磁共振
体内
化学
软件可移植性
核过剩效应
分子成像
背景(考古学)
核磁共振波谱
计算机科学
医学
物理
放射科
生物
古生物学
生物技术
程序设计语言
作者
Dahmane Boudries,Philippe Massot,Elodie Parzy,Seda Seren,Philippe Mellet,Jean-Michel Franconi,Sylvain Miraux,Eric Bezançon,Sylvain R A Marque,Gérard Audran,Markus Muetzel,Stefan Wintzheimer,Florian Fidler,Eric Thiaudière
标识
DOI:10.1016/j.jmr.2023.107383
摘要
Development of very-low field MRI is an active area of research. It aims at reducing operating costs and improve portability. However, the signal-to-noise issue becomes prominent at ultra-low field (<1 mT), especially for molecular imaging purposes that addresses specific biochemical events. In the context of preclinical molecular MRI of abnormal proteolysis the paper describes a MRI system able to produce Overhauser-enhanced MR images in living rats through in situ Dynamic Nuclear Polarization at 206 µT using stable and non-toxic nitroxides. In parallel conventional images are generated at 206 µT following pre-polarization at 20 mT. Results show that nitroxides are visualized in 3D within a few minutes in the lungs, kidneys and bladder post-administration. This system will be used for molecular imaging of inflammation using protease-specific nitroxide probes.
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