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◆ Magnetic Resonance in Medicine2026-01-12· Mesoscopic physics

Motion‐ and Field‐Robust Mesoscopic Whole‐Brain T2*‐Weighted Imaging at 7 and 11.7 T Using Servo Navigation

Matthias Serger, Rüdiger Stirnberg, Philipp Ehses, Malte Riedel, Thomas Ulrich, Caroline Le Ster, Franck Mauconduit, Vincent Gras, A. Amadon, Alexandre Vignaud, Son Chu, G Shajan, Maxim Zaitsev, Nicolas Boulant, Klaas P. Pruessmann, Tony Stoecker

原始摘要(英文原文)· Original abstract
PURPOSE: -weighted human brain imaging using servo navigation at ultra-high fields up to 11.7 T. METHODS: MR-based servo navigators were integrated into a segmented 3D-EPI sequence to allow for prospective correction of involuntary head motion and first-order shim changes. Seven subjects were scanned with whole-brain protocols at 0.3 mm isotropic resolution with and without correction at 7 and 11.7 T. Validation was performed on detailed brain vasculature in scans with involuntary motion. RESULTS: Blurring of small veins was reduced by servo navigation for all subjects and across field strengths. In case of involuntary large motion, the method preserved image quality, while uncorrected motion led to severe artifacts. In case of microscopic motion, reduced blurring and shading in the frontal lobe demonstrate the additional benefit of prospective field drift correction. CONCLUSION: -weighted imaging under realistic motion and field changes within 5.5 to 11 min scan time at 11.7 and 7 T.
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Motion‐ and Field‐Robust Mesoscopic Whole‐Brain T2*‐Weighted Imaging at 7 and 11.7 T Using Servo Navigation — 科研速览 Science Skim