Meeting Banner
Abstract #3543

In Vivo High Angular Resolution Diffusion Imaging at 16.4 Tesla

Othman I. Alomair1, Graham J. Galloway1, Ian M. Brereton1, Maree Smith2, Nyoman D. Kurniawan1

1Centre for Advanced Imaging, University of Queensland, Brisbane, Queensland, Australia; 2Pharmacy School, University of Queensland, Brisbane, Queensland, Australia

Segmented echo planar imaging diffusion weighted imaging has been robust in acquiring data at 16.4 Tesla magnetic field with HARDI reconstruction within experimental time frame.

Keywords

acceleration accommodate achieved acquisition advanced angular animal anterior approximately assessing avoid axis beats better brain challenges clear coil combination component consequently constrained contiguous coronal criteria critical crossing deconvolution desirable diffusion dire discarded distortion dummy educe educes either encoding error especially excitation exit experiment experimental feature field five frequency generated ghosting global grad gradient graham harmonic head in vivo incorporated inhomogeneity interface late lateral lengthening local long magnetization maintaining maintenance matrix mental meters mice micro microns million minim minute model models motion mouse navigator noise optimized oxygen para parametric partial permitted pharmacy physical placed planar press produce produced pulse quality queen quired reach read reasonable reconstructed reconstruction reduce reducing reduction require resolution resolved respiratory running segmentation sensitivity shimming shots significantly slice slices smith space spherical spin stage steady step steps streamlines studies system tanner tensor termination trace track tracking tracks train transform triggering truncation vertical volume whilst whole worsened