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February 1, 2018Journal of Cardiovascular Magnetic Resonance14 citationsOpen Access

Feasibility of 3D black-blood variable refocusing angle fast spin echo cardiovascular magnetic resonance for visualization of the whole heart and great vessels in congenital heart disease

MHMarkus HenningssonRZRiad Abou ZahrADAdrian Dyer

Structured PICO

Does 3D FSE cardiovascular magnetic resonance improve the visualization of the whole heart and great vessels compared to conventional 3D bSSFP in patients with congenital heart disease?

P
Population
31 subjects, comprising 10 healthy subjects and 21 patients with congenital heart disease (CHD).
I
Intervention
3D black-blood, electrocardiogram (ECG)-triggered and respiratory-navigated fast spin echo (3D FSE) cardiovascular magnetic resonance.
C
Comparator
Conventional 3D balanced steady-state free precession (bSSFP) cardiovascular magnetic resonance.
O
Outcome
Ability to perform segmental assessment, local signal-to-noise ratio (SNRl), and local contrast-to-noise ratio (CNRl).surrogate

The combination of 3D FSE and 3D bSSFP CMR provides a highly successful alternative to gadolinium contrast-enhanced morphological CMR for segmental assessment in patients with congenital heart disease.

Abstract

Volumetric black-blood cardiovascular magnetic resonance (CMR) has been hampered by long scan times and flow sensitivity. The purpose of this study was to assess the feasibility of black-blood, electrocardiogram (ECG)-triggered and respiratory-navigated 3D fast spin echo (3D FSE) for the visualization of the whole heart and great vessels. The implemented 3D FSE technique used slice-selective excitation and non-selective refocusing pulses with variable flip angles to achieve constant echo signal for tissue with T1 (880 ms) and T2 (40 ms) similar to the vessel wall. Ten healthy subjects and 21 patients with congenital heart disease (CHD) underwent 3D FSE and conventional 3D balanced steady-state free precession (bSSFP). The sequences were compared in terms of ability to perform segmental assessment, local signal-to-noise ratio (SNRl) and local contrast-to-noise ratio (CNRl). In both healthy subjects and patients with CHD, 3D FSE showed superior pulmonary vein but inferior coronary artery origin visualisation compared to 3D bSFFP. However, in patients with CHD the combination of 3D bSSFP and 3D FSE whole-heart imaging improves the success rate of cardiac morphological diagnosis to 100% compared to either technique in isolation (3D FSE, 23.8% success rate, 3D bSSFP, 5% success rate). In the healthy subjects SNRl for 3D bSSFP was greater than for 3D FSE (30.1 ± 7.3 vs 20.9 ± 5.3; P = 0.002) whereas the CNRl was comparable (17.3 ± 5.6 vs 17.4 ± 4.9; P = 0.91) between the two scans. The feasibility of 3D FSE for whole-heart black-blood CMR imaging has been demonstrated. Due to their high success rate for segmental assessment, the combination of 3D bSSFP and 3D FSE may be an attractive alternative to gadolinium contrast enhanced morphological CMR in patients with CHD.

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Cite This Study

Henningsson et al. (2018) studied this question.

synapsesocial.com/papers/6a1bc0ec6f692abb725ed8b2https://doi.org/10.1186/s12968-018-0508-1
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Unsupervised free-breathing 3-dimensional imaging of morphology, function and flow in congenital heart disease under 30 minutes: pilot study2014 · 1 citations
  2. 2High-resolution 3D whole-heart bright- and black-blood imaging with co-registered T2 mapping at 0.55 T2025 · 1 citations
  3. 3Non-contrast free-breathing 2D CINE compressed SENSE T1-TFE cardiovascular MRI at 3T in sedated young children for assessment of congenital heart disease2024 · 2 citations
  4. 4Multiparametric 3D cardiac MR for simultaneous bright- and black-blood imaging and joint T1/T2 myocardial tissue mapping2024
  5. 5Performance of Free-Running Cardiac and Respiratory Motion-Resolved Whole-Heart 5D MRI in Congenital Heart Disease Patients Using a Gadolinium Enhanced Fast-Interrupted Steady-State Sequence.2026