Technical assessment of whole body angiography and cardiac function within a single MRI examination

Aim To evaluate a combined protocol for simultaneous cardiac MRI (CMR) and contrast-enhanced (CE) whole-body MR angiography (WB-MRA) techniques within a single examination. Materials and methods Asymptomatic volunteers ( n  = 48) with low-moderate risk of cardiovascular disease (CVD) were recruited....

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Veröffentlicht in:Clinical radiology 2015-06, Vol.70 (6), p.595-603
Hauptverfasser: Gandy, S.J, Lambert, M, Belch, J.J.F, Cavin, I.D, Crowe, E, Littleford, R, Macfarlane, J.A, Matthew, S.Z, Martin, P, Nicholas, R.S, Struthers, A.D, Sullivan, F, Waugh, S.A, White, R.D, Weir-McCall, J.R, Houston, J.G
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Sprache:eng
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Zusammenfassung:Aim To evaluate a combined protocol for simultaneous cardiac MRI (CMR) and contrast-enhanced (CE) whole-body MR angiography (WB-MRA) techniques within a single examination. Materials and methods Asymptomatic volunteers ( n  = 48) with low-moderate risk of cardiovascular disease (CVD) were recruited. The protocol was divided into four sections: (1) CMR of left ventricle (LV) structure and function; (2) CE-MRA of the head, neck, and thorax followed by the distal lower limbs; (3) CMR LV “late gadolinium enhancement” assessment; and (4) CE-MRA of the abdomen and pelvis followed by the proximal lower limbs. Multiple observers undertook the image analysis. Results For CMR, the mean ejection fraction (EF) was 67.3 ± 4.8% and mean left ventricular mass (LVM) was 100.3 ± 22.8 g. The intra-observer repeatability for EF ranged from 2.1–4.7% and from 9–12 g for LVM. Interobserver repeatability was 8.1% for EF and 19.1 g for LVM. No LV delayed myocardial enhancement was observed. For WB-MRA, some degree of luminal narrowing or stenosis was seen at 3.6% of the vessel segments (involving n  = 29 of 48 volunteers) and interobserver radiological opinion was consistent in 96.7% of 1488 vessel segments assessed. Conclusion Combined assessment of WB-MRA and CMR can be undertaken within a single examination on a clinical MRI system. The associated analysis techniques are repeatable and may be suitable for larger-scale cardiovascular MRI studies.
ISSN:0009-9260
1365-229X
DOI:10.1016/j.crad.2015.02.003