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Rapid and accurate navigators for motion and B0 tracking using QUEEN: Quantitatively enhanced parameter estimation from navigators
DOI:10.1002/mrm.29976.png)
Abstract
En 中文
Purpose: To develop a framework that jointly estimates rigid motion and polarizing magnetic field (B-0) perturbations (delta B-0) for brain MRI using a single navigator of a few milliseconds in duration, and to additionally allow for navigator acquisition at arbitrary timings within any type of sequence to obtain high-temporal resolution estimates. Theory and Methods: Methods exist that match navigator data to a low-resolution single-contrast image (scout) to estimate either motion or delta B-0. In this work, called QUEEN (QUantitatively Enhanced parameter Estimation from Navigators), we propose combined motion and delta B-0 estimation from a fast, tailored trajectory with arbitrary-contrast navigator data. To this end, the concept of a quantitative scout (Q-Scout) acquisition is proposed from which contrast-matched scout data is predicted for each navigator. Finally, navigator trajectories, contrast-matched scout, and delta B-0 are integrated into a motion-informed parallel-imaging framework. Results: Simulations and in vivo experiments show the need to model delta B-0 to obtain accurate motion parameters estimated in the presence of strong delta B-0. Simulations confirm that tailored navigator trajectories are needed to robustly estimate both motion and delta B-0. Furthermore, experiments show that a contrast-matched scout is needed for parameter estimation from multicontrast navigator data. A retrospective, in vivo reconstruction experiment shows improved image quality when using the proposed Q-Scout and QUEEN estimation. Conclusions: We developed a framework to jointly estimate rigid motion parameters and delta B-0 from navigators. Combing a contrast-matched scout with the proposed trajectory allows for navigator deployment in almost any sequence and/or timing, which allows for higher temporal-resolution motion and delta B-0 estimates.
Keywords:
B-0 correction
motion correction
navigators
parallel imaging
reconstruction
scout
Journal
IF:
3
Papers:
1.2W
Citations:
3.1W

