Vanhoutte Laetitia, Gerber Bernhard L, Gallez Bernard, Po Chrystelle, Magat Julie, Balligand Jean-Luc, Feron Olivier, Moniotte Stéphane
Department of Paediatric Cardiology, Cliniques universitaires Saint Luc, Université Catholique de Louvain (UCL), Brussels, Belgium.
Pole of Pharmacology and Therapeutics (FATH), Institute of Experimental and Clinical Research (IREC), Université Catholique de Louvain (UCL), Brussels, Belgium.
Basic Res Cardiol. 2016 Jul;111(4):46. doi: 10.1007/s00395-016-0565-2. Epub 2016 Jun 10.
Transgenic and gene knockout rodent models are primordial to study pathophysiological processes in cardiovascular research. Over time, cardiac MRI has become a gold standard for in vivo evaluation of such models. Technical advances have led to the development of magnets with increasingly high field strength, allowing specific investigation of cardiac anatomy, global and regional function, viability, perfusion or vascular parameters. The aim of this report is to provide a review of the various sequences and techniques available to image mice on 7-11.7 T magnets and relevant to the clinical setting in humans. Specific technical aspects due to the rise of the magnetic field are also discussed.
转基因和基因敲除啮齿动物模型对于心血管研究中病理生理过程的研究至关重要。随着时间的推移,心脏磁共振成像已成为对此类模型进行体内评估的金标准。技术进步促使磁场强度越来越高的磁体得以开发,从而能够对心脏解剖结构、整体和局部功能、存活能力、灌注或血管参数进行特异性研究。本报告旨在综述在7-11.7T磁体上对小鼠成像且与人类临床情况相关的各种序列和技术。还讨论了由于磁场增强而产生的特定技术方面的问题。