Department of Cardiology, Amsterdam UMC, Vrije Universiteit Amsterdam, Amsterdam Cardiovascular Sciences, De Boelelaan 1117, 1081 HV, Amsterdam, The Netherlands.
Department of Radiology, Amsterdam UMC, University of Amsterdam, Meibergdreef 9, 1105 AZ, Amsterdam, The Netherlands.
Eur Heart J Cardiovasc Imaging. 2022 Jan 24;23(2):154-165. doi: 10.1093/ehjci/jeab112.
Identification of flow patterns within the heart has long been recognized as a potential contribution to the understanding of physiological and pathophysiological processes of cardiovascular diseases. Although the pulsatile flow itself is multi-dimensional and multi-directional, current available non-invasive imaging modalities in clinical practice provide calculation of flow in only 1-direction and lack 3-dimensional volumetric velocity information. Four-dimensional flow cardiovascular magnetic resonance imaging (4D flow CMR) has emerged as a novel tool that enables comprehensive and critical assessment of flow through encoding velocity in all 3 directions in a volume of interest resolved over time. Following technical developments, 4D flow CMR is not only capable of visualization and quantification of conventional flow parameters such as mean/peak velocity and stroke volume but also provides new hemodynamic parameters such as kinetic energy. As a result, 4D flow CMR is being extensively exploited in clinical research aiming to improve understanding of the impact of cardiovascular disease on flow and vice versa. Of note, the analysis of 4D flow data is still complex and accurate analysis tools that deliver comparable quantification of 4D flow values are a necessity for a more widespread adoption in clinic. In this article, the acquisition and analysis processes are summarized and clinical applications of 4D flow CMR on the heart including conventional and novel hemodynamic parameters are discussed. Finally, clinical potential of other emerging intra-cardiac 4D flow imaging modalities is explored and a near-future perspective on 4D flow CMR is provided.
长期以来,人们一直认为识别心脏内的流动模式有助于理解心血管疾病的生理和病理生理过程。尽管脉动流本身是多维和多向的,但目前临床实践中可用的非侵入性成像方式只能计算一个方向的流动,缺乏三维容积速度信息。四维血流磁共振成像(4D flow CMR)作为一种新工具出现,能够在感兴趣的容积内随时间编码所有三个方向的速度,全面和关键地评估流动。随着技术的发展,4D flow CMR 不仅能够可视化和量化常规流动参数,如平均/峰值速度和每搏量,还能够提供新的血流动力学参数,如动能。因此,4D flow CMR 正在广泛应用于临床研究,旨在提高对心血管疾病对流动的影响及其反之的理解。值得注意的是,4D 流数据的分析仍然很复杂,需要能够提供可比的 4D 流值定量分析的准确分析工具,才能更广泛地应用于临床。本文总结了 4D flow CMR 的采集和分析过程,并讨论了其在心脏方面的临床应用,包括常规和新型血流动力学参数。最后,探讨了其他新兴的心脏内 4D 流成像方式的临床应用潜力,并对 4D flow CMR 的近期前景进行了展望。