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Cardiovascular Magnetic Resonance Imaging in Experimental Models

机译:实验模型中的心血管磁共振成像

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Cardiovascular magnetic resonance (CMR) imaging is the modality of choice for clinical studies of the heart and vasculature, offering detailed images of both structure and function with high temporal resolution.Small animals are increasingly used for genetic and translational research, in conjunction with models of common pathologies such as myocardial infarction. In all cases, effective methods for characterising a wide range of functional and anatomical parameters are crucial for robust studies.CMR is the gold-standard for the non-invasive examination of these models, although physiological differences, such as rapid heart rate, make this a greater challenge than conventional clinical imaging. However, with the help of specialised magnetic resonance (MR) systems, novel gating strategies and optimised pulse sequences, high-quality images can be obtained in these animals despite their small size. In this review, we provide an overview of the principal CMR techniques for small animals for example cine, angiography and perfusion imaging, which can provide measures such as ejection fraction, vessel anatomy and local blood flow, respectively. In combination with MR contrast agents, regional dysfunction in the heart can also be identified and assessed. We also discuss optimal methods for analysing CMR data, particularly the use of semi-automated tools for parameter measurement to reduce analysis time. Finally, we describe current and emerging methods for imaging the developing heart, aiding characterisation of congenital cardiovascular defects. Advanced small animal CMR now offers an unparalleled range of cardiovascular assessments. Employing these methods should allow new insights into the structural, functional and molecular basis of the cardiovascular system.
机译:心血管磁共振(CMR)成像是心脏和脉管系统临床研究的首选模式,可提供具有高时间分辨率的结构和功能的详细图像。小型动物越来越多地被用于遗传和翻译研究,以及动物模型常见的病理,例如心肌梗塞。在所有情况下,表征广泛的功能和解剖学参数的有效方法对于稳健的研究至关重要.CMR是这些模型无创检查的金标准,尽管生理差异(例如心律加快)使这一点成为可能。比传统的临床成像面临更大的挑战。但是,借助特殊的磁共振(MR)系统,新颖的门控策略和优化的脉冲序列,尽管这些动物体型较小,但仍可以获得高质量的图像。在本文中,我们概述了小型动物的主要CMR技术,例如电影,血管造影和灌注成像,这些技术可以分别提供诸如射血分数,血管解剖和局部血流的测量。结合MR造影剂,还可以识别和评估心脏的局部功能障碍。我们还将讨论分析CMR数据的最佳方法,尤其是使用半自动工具进行参数测量以减少分析时间。最后,我们描述了用于成像心脏发育的当前和新兴方法,以帮助表征先天性心血管缺陷。先进的小动物CMR现在可提供无与伦比的心血管评估范围。采用这些方法应该可以使人们对心血管系统的结构,功能和分子基础有了新的认识。

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