2022
DOI: 10.1002/mrm.29255
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Data‐driven motion‐corrected brain MRI incorporating pose‐dependent B0 fields

Abstract: To develop a fully data-driven retrospective intrascan motion-correction framework for volumetric brain MRI at ultrahigh field (7 Tesla) that includes modeling of pose-dependent changes in polarizing magnetic (B 0 ) fields. Theory and Methods: Tissue susceptibility induces spatially varying B 0 distributions in the head, which change with pose. A physics-inspired B 0 model has been deployed to model the B 0 variations in the head and was validated in vivo. This model is integrated into a forward parallel imagi… Show more

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Cited by 11 publications
(11 citation statements)
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“…However, the phase variations at the intra‐shot group level are not considered currently. Some recent work 57 has considered motion induced B0$$ {B}_0 $$ variations to improve the performance of mcSENSE for anatomical imaging at 7T. This method uses a physics‐inspired B0$$ {B}_0 $$ model, which describes the B0$$ {B}_0 $$ variation map as a linear combination of the pitch and roll rotation angles, and thus only two additional linear coefficient maps instead of an individual B0$$ {B}_0 $$ variation map for each motion state need to be estimated.…”
Section: Discussionmentioning
confidence: 99%
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“…However, the phase variations at the intra‐shot group level are not considered currently. Some recent work 57 has considered motion induced B0$$ {B}_0 $$ variations to improve the performance of mcSENSE for anatomical imaging at 7T. This method uses a physics‐inspired B0$$ {B}_0 $$ model, which describes the B0$$ {B}_0 $$ variation map as a linear combination of the pitch and roll rotation angles, and thus only two additional linear coefficient maps instead of an individual B0$$ {B}_0 $$ variation map for each motion state need to be estimated.…”
Section: Discussionmentioning
confidence: 99%
“…More recently, DISORDER has been further developed to address pose-dependent B 0 field changes for structural imaging at 7T. 57 However, none of the existing motion correction methods compensate for physiologically induced phase variations for 3D multi-shot EPI.…”
Section: Introductionmentioning
confidence: 99%
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“…This motivates the implementation of motion compensation (real‐time or retrospective) in future work. Although effective motion correction 43 might enable longer TR MP2RAGE times and correspondingly scan durations, CNR gains are likely to be modest, and motion correction remains challenging at 7T owing to concomitant changes in static B 0 44 and B 1 − fields 45 with head pose. A larger sample size is also needed to verify which images (FLAWS min , FLAWS hc , FLAWS hco , and MP2RAGE UNI) provide contrast improvement and confer clinical utility.…”
Section: Discussionmentioning
confidence: 99%
“…[11][12][13][14][15] As a second category, data-driven estimation methods estimate changes in motion and 𝛿B 0 by fitting a motion-and 𝛿B 0 -informed signal model to the acquired imaging data. 2,7,16,17 As a third category, navigators are dedicated encoding blocks added to the sequence that encode relative changes in motion and/or 𝛿B 0 that can be retrieved using different strategies. Inter-navigator comparison of the acquired navigator signals is usually performed for 2D/3D navigators using image registration and B 0 fitting, to estimate relative motion and 𝛿B 0 .…”
Section: Introductionmentioning
confidence: 99%