Key result
A dynamic inversion time scheme improved qualitative image quality scores compared to standard imaging (2.2 vs. 1.8, P=0.008) in patients with persistent atrial fibrillation.
Why the study?
Does a dynamic inversion time (dynamic-TI) scheme improve image quality in 3D late gadolinium enhancement imaging in patients with atrial fibrillation?
Does a dynamic inversion time (dynamic-TI) scheme improve image quality in 3D late gadolinium enhancement imaging in patients with atrial fibrillation?
Absolute Event Rate: 2.2% vs 1.8%
p-value: p=0.008
A dynamic inversion time algorithm significantly improves the image quality of 3D late gadolinium enhancement MRI in patients with atrial fibrillation by reducing sensitivity to heart rate variations.
May improve 3D LGE image quality in persistent AF; hypothesis-generating and requires prospective validation before clinical use.
PURPOSE: High resolution three-dimensional (3D) late gadolinium enhancement (LGE) imaging is performed with single R-wave gating to minimize lengthy acquisition durations. In patients with atrial fibrillation (AF), heart rate variability results in variable magnetization recovery between sequence repeats, and image quality is often poor. In this study, we implemented and tested a dynamic inversion time (dynamic-TI) scheme designed to reduce sequence sensitivity to heart rate variations. METHODS: An inversion-prepared 3D segmented gradient echo sequence was modified so that the TI varied automatically from beat-to-beat (dynamic-TI) based on the time since the last sequence repeat. 3D LGE acquisitions were performed in 17 patients prior to radio frequency ablation of persistent AF both with and without dynamic-TI. Qualitative image quality scores, blood signal-to-ghosting ratios (SGRs). and blood-myocardium contrast-to-ghosting ratios (CGRs) were compared. RESULTS: Image quality scores were higher with dynamic-TI than without dynamic-TI (2.2 ± 0.9 vs. 1.8 ± 1.1, P = 0.008), as were blood-myocardium CGRs (13.8 ± 7.6 vs. 8.3 ± 6.1, P = 0.003) and blood SGRs (19.6 ± 8.5 vs. 13.1 ± 8.0, P = 0.003). CONCLUSION: The dynamic-TI algorithm improves image quality of 3D LGE imaging in this difficult patient population by reducing the sequence sensitivity to RR interval variations
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Keegan et al. (2014) studied persistent atrial fibrillation (n=17). dynamic inversion time (dynamic-TI) scheme vs. without dynamic-TI was evaluated on Qualitative image quality scores (p=0.008). A dynamic inversion time scheme improved qualitative image quality scores compared to standard imaging (2.2 vs. 1.8, P=0.008) in patients with persistent atrial fibrillation.
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