Aug 2026· Journal of Cardiovascular Magnetic Resonance· pp.
102786
· 0 citations· 38 references
Medicine
TL;DR
Accelerated WH-4DF MRI is clinically robust and broadly applicable across CHD, including complex postoperative anatomies, and provides comparable numbers to 2D-PC, reproducible, and time-efficient flow quantification with superior coverage and reduced operator dependence.
Abstract
Aims
Cardiac MRI is central to evaluating ventricular function and hemodynamics in pediatric congenital heart disease (CHD). Conventional two-dimensional phase-contrast (2D-PC) imaging is challenged by fixed planes, operator dependence, and multiple breath-holds, where four-dimensional flow (4DF) MRI overcomes these challenges. This study compares accelerated whole heart 4D Flow (WH-4DF) MRI with 2D-PC and volumetric measurements in routine clinical follow up of pediatric CHD and highlights its applicability.
Methods
AND
Results
For this prospective study seventy-one consecutive pediatric patients (median age 14 ± 2.4 years; 49 male) with surgically corrected CHD underwent both 2D-PC and accelerated WH-4DF MRI. Planning and acquisition times and overall success rate were recorded. Flow, velocity and volumetric measurements were compared using Bland-Altman analysis, orthogonal regression, and intraclass correlation coefficients. WH-4DF showed excellent agreement with 2D-PC and short-axis volumetry for aortic, pulmonary, and ventricular stroke volumes (mean differences <5%). Mean planning and acquisition time for WH-4DF was 10.3minutes (SD 1.1), where planning and acquisition time of 2D-PC was 11.2minutes (SD 6.25). Aliasing was observed in 11% of the WH-4DF acquisitions but did not compromise interpretability.
Conclusions
Accelerated WH-4DF MRI is clinically robust and broadly applicable across CHD, including complex postoperative anatomies. It provides comparable numbers to 2D-PC, reproducible, and time-efficient flow quantification with superior coverage and reduced operator dependence. A single WH-4DF scan can replace multiple 2D-PC acquisitions with comparable results and may enhance assessment of regurgitant flow. These features underscore its potential role in routine clinical practice and in advancing our understanding of disease processes.
This document addresses the needs for an "ideal" post-processing software for 4D flow in patients with CHD and provides information on general requirements, velocity encoding, offset and aliasing correction, visualization, segmentation and reconstruction as well as output data.
Julio Garcia, J. Geiger, Adam B. Christopher et al.· Journal of Cardiovascular Ma...· 0 citations
Simultaneous structural-functional lung imaging in a single free-breathing acquisition was feasible in this cohort of older awake pediatric participants using 0.55-T MRI, with structural images suitable for evaluating major pulmonary findings and quantitative ventilation metrics correlating strongly with PREFUL.
Xin Miao, N. Lee, HaiThuy N. Nguyen et al.· Radiology advances· 0 citations
BACKGROUND
Conventional breath-held 2D bSSFP cine CMR requires multiple breath holds and prolonged acquisition time, posing challenges for children and patients with congenital heart disease (CHD). Deep-learning (DL)-based reconstruction enables undersampled data acquisition with rapid image completion, offering the po...
Jonathan Kochav, Jun-Jie Ma, S. Jambawalikar et al.· Journal of Cardiovascular Ma...· 0 citations
Volumetric real-time MRI is feasible for the guidance of invasive procedures such as right-heart catheterization at 0.55T and offers flexible real-time re-slicing, volumetric 3D visualization, and the potential for improved device monitoring.
Prakash Kumar, R. Ramasawmy, A. Javed et al.· Journal of Cardiovascular Ma...· 0 citations
The RT-SVR approach enables 4D cardiac cine with comparable bi-ventricular volumes, contrast, sharpness, and acquisition time compared to standard breath-hold cine while providing additional motion robustness.
Ye Tian, A. A. Joshi, Jon A. Detterich et al.· Magnetic Resonance in Medici...· 0 citations
Purpose To evaluate pulmonary arterial pulse wave velocity (PWV) derived from phase-resolved functional lung (PREFUL) MRI in participants with suspected pulmonary hypertension (PH), assess its association with established markers, and investigate its prognostic value for 12-month mortality. Materials and Methods This p...
M. M. Klein, A. Voskrebenzev, F. Klimeš et al.· Radiology: Cardiothoracic Im...· 0 citations
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