| Literature DB >> 18799336 |
Kawin Setsompop1, Vijayanand Alagappan, Adam C Zelinski, Andreas Potthast, Ulrich Fontius, Franz Hebrank, Franz Schmitt, Lawrence L Wald, Elfar Adalsteinsson.
Abstract
At high magnetic field, B(1)(+) non-uniformity causes undesired inhomogeneity in SNR and image contrast. Parallel RF transmission using tailored 3D k-space trajectory design has been shown to correct for this problem and produce highly uniform in-plane magnetization with good slice selection profile within a relatively short excitation duration. However, at large flip angles the excitation k-space based design method fails. Consequently, several large-flip-angle parallel transmission designs have recently been suggested. In this work, we propose and demonstrate a large-flip-angle parallel excitation design for 90 degrees and 180 degrees spin-echo slice-selective excitations that mitigate severe B(1)(+) inhomogeneity. The method was validated on an 8-channel transmit array at 7T using a water phantom with B(1)(+) inhomogeneity similar to that seen in human brain in vivo. Slice-selective excitations with parallel RF systems offer means to implement conventional high-flip excitation sequences without a severe pulse-duration penalty, even at very high B(0) field strengths where large B(1)(+) inhomogeneity is present.Entities:
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Year: 2008 PMID: 18799336 PMCID: PMC2610679 DOI: 10.1016/j.jmr.2008.08.012
Source DB: PubMed Journal: J Magn Reson ISSN: 1090-7807 Impact factor: 2.229