Meeting Banner
Abstract #2459

High Temporal Resolution 3D Motion Correction of MP-RAGE with Cylindrical Sampling and Parallel Reconstruction

Wei Lin1, Qin Qin2, 3, Feng Huang1, Randy Duensing1

1Invivo Corporation, Philips Healthcare, Gainesville, FL, United States; 2Department of Radiology, The Johns Hopkins University, Baltimore, MD, United States; 3F.M. Kirby Research Center, Kennedy Krieger Institute, Baltimore, MD, United States

A self-navigated method for motion correction in multicoil imaging applications, involving both data collection and reconstruction, is presented. The cylindrical k-space is collected using multiple pairs of orthogonal view planes with a bit-reversed radial angle ordering scheme. A rapid self-calibrated parallel imaging method, generalized GRAPPA Operator for Wider readout Lines (GROWL), facilitates both motion detection and image reconstruction. Full 3D rigid-body motion detection is achieved at a temporal resolution of every two consecutive view planes (2-6 seconds). The efficacy of the proposed technique is demonstrated in healthy volunteers using a magnetization-prepared rapid gradient echo (MP-RAGE) sequence.

Keywords

achieve achieved acquisition addition additional advantage allows amount applied arbitrary artifacts asked axis band blurring body brain calibrated central challenge channel clinical coil collected combined comes consecutive constraints corporation corrected correction correlation cylinder cylindrical degree detected detection determined efficacy efficiency either encode encoding entropy errors every expand extended facilitate facilitates forming free full ghosts gradient gradients gray growl hardware head healthy incompatible indicated institute interleaved interval introduced introduces inversion isotropic like long longer many matrix midway minute minutes modified module motion navigated navigator neighboring nodding operator operators orthogonal pairs parallel particularly patient pediatric post potential prepared previously prior procedure projection prolong proposed pulse radial radiology rage rapid rapidly readout real reconstruction reduced reformatting rejected rejection removing require resolution respectively restored reverse reversed rigid rotating rotation sampled samples sampling scanner scheme self sharing sharpness short slice space spin subject subset successive takes temporal threshold trajectory translation turbo view voluntary volunteer white wider