Clinical intra-cardiac 4D flow CMR: acquisition, analysis, and clinical applications
Ahmet Demirkiran1, Pim van Ooij2, Jos J M Westenberg3
1Department of Cardiology, Amsterdam UMC, Vrije Universiteit Amsterdam, Amsterdam Cardiovascular Sciences, De Boelelaan 1117, 1081 HV, Amsterdam, The Netherlands.
Insights
Four-dimensional flow cardiovascular magnetic resonance imaging (4D flow CMR) offers comprehensive 3D heart flow analysis, advancing cardiovascular disease understanding. Accurate analysis tools are crucial for its widespread clinical adoption.
Area of Science:
- Cardiovascular Imaging
- Biomedical Engineering
- Medical Physics
Background:
- Understanding heart blood flow is vital for cardiovascular disease research.
- Current imaging lacks 3D volumetric velocity, limiting flow pattern analysis.
- Four-dimensional flow cardiovascular magnetic resonance imaging (4D flow CMR) addresses this gap.
Purpose of the Study:
- To review the acquisition and analysis of 4D flow CMR data.
- To discuss clinical applications of 4D flow CMR in cardiology.
- To explore future perspectives of intra-cardiac flow imaging.
Main Methods:
- Utilizes 4D flow CMR to encode velocity in all 3 directions over time.
- Enables visualization and quantification of conventional and novel hemodynamic parameters.
- Summarizes data acquisition, analysis processes, and clinical applications.
Main Results:
- 4D flow CMR provides comprehensive 3D volumetric velocity information.
- It allows assessment of conventional parameters (e.g., velocity, stroke volume) and novel ones (e.g., kinetic energy).
- Extensive clinical research exploits 4D flow CMR for disease impact studies.
Conclusions:
- 4D flow CMR is a powerful tool for assessing cardiac hemodynamics.
- Development of accurate analysis tools is essential for broader clinical implementation.
- Emerging intra-cardiac 4D flow modalities show significant clinical potential.
Abstract:
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.
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