Effective blood signal suppression using double inversion-recovery and slice reordering for multislice fast spin-echo MRI and its application in simultaneous proton density and T sub(2) weighted imaging

Purpose To design a multislice double inversion-recovery fast spin-echo (FSE) sequence, with k-space reordered by inversion time at slice position (KRISP) technique, to produce black-blood vessel wall magnetic resonance imaging (MRI). Materials and Methods In this sequence, central k-space sampling...

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Veröffentlicht in:Journal of magnetic resonance imaging 2004-11, Vol.20 (5), p.881-888
Hauptverfasser: Kuribayashi, H, Tessier, J J, Checkley, DR, Wang, Y-X, Hultin, L, Waterton, J C
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Sprache:eng
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Zusammenfassung:Purpose To design a multislice double inversion-recovery fast spin-echo (FSE) sequence, with k-space reordered by inversion time at slice position (KRISP) technique, to produce black-blood vessel wall magnetic resonance imaging (MRI). Materials and Methods In this sequence, central k-space sampling for each slice is required at inversion time (TI) of the blood signal. To fill the entire k-space, the peripheral lines are obtained less or greater the TI and using a rotating slice order. Blood flow signal suppression was first evaluated using a phantom. Simulation studies were used to investigate FSE image quality. The final sequence was then applied to the rabbit abdominal aorta MRI at 4.7 T.
ISSN:1053-1807