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Abstract #0392

High temporal resolution motion correction in MRF using quantitative-scout-based navigation (QUEEN) and motion-dictionary matching.

Aizada Nurdinova1, Xiaozhi Cao1, Julio Oscanoa2, Daniel Raz Abraham3, Nan Wang1, and Kawin Setsompop1,3
1Radiology, Stanford University, Stanford, CA, United States, 2Bioengineering, Stanford University, Stanford, CA, United States, 3Electrical Engineering, Stanford University, Stanford, CA, United States

Synopsis

Keywords: Motion Correction, Motion Correction

Motivation: Motion correction in MRF using navigators in sequence deadtime improves imaging robustness, however, temporal resolution of the approaches is limited to 6-10 s.

Goal(s): We aim to achieve accurate motion tracking at 0.5 s temporal resolution, by integrating the QUantitatively-Enhanced parameter Estimation from Navigators (QUEEN) approach into MRF.

Approach: Compact navigators were inserted throughout the MRF acquisition at a minimal encoding efficiency reduction of ~5%. The acquisition of the quantitative scout was integrated into the MRF’s dummy scan, resulting in no added scantime.

Results: The estimated in vivo motion parameters have MAE of 0.4 mm and 0.2 deg compared to image registration estimates.

Impact: The proposed method can achieve high temporal resolution motion estimates, and therefore, is a promising approach for high-precision motion correction in MRF.

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Keywords