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September 17, 2025Proceedings on CD-ROM - International Society for Magnetic Resonance in Medicine. Scientific Meeting and Exhibition/Proceedings of the International Society for Magnetic Resonance in Medicine, Scientific Meeting and Exhibition0 citations

Motion- and field-robust ultra-high-resolution whole-brain imaging enabled by servo navigation

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MSMatthias SergerRSRüdiger StirnbergPEPhilipp Ehses

Key Points

  • Servo navigators successfully reduce motion and field-induced artifacts in brain imaging.
  • The method improved the visibility of small vessels and fine anatomical details in MRI.
  • Involuntary motion experiments confirmed high precision in motion correction capabilities.
  • Using a 3D-EPI sequencing approach, ultra-high-resolution imaging reached a resolution of 0.25mm isotropic.

Abstract

Motivation: Even subtle involuntary motion can degrade image quality in ultra-high-resolution imaging due to long acquisition times. Goal(s): To reduce motion and dynamic field induced artifacts in ultra-high-resolution T2*-weighted imaging (0.25mm³) using servo navigators for prospective correction at 7T. Approach: Servo navigators were integrated into a segmented 3D-EPI sequence to correct motion and field variations. Involuntary motion experiments were conducted, and minimum-intensity projections were used to assess the effect of prospective correction on fine details in brain anatomy. Results: Servo navigators provide motion and field estimates with sufficiently high precision and successfully mitigate artifacts in ultra-high-resolution MRI, enabling the investigation of submillimeter brain structures. Impact: Improvements in visibility of small vessels demonstrate the capability of servo navigators to correct for small motions and field changes during ultra-high-resolution T2*-weighted whole-brain imaging (0.25mm isotropic) using 3D-EPI.

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Cite This Study

Serger et al. (2025) studied this question.

synapsesocial.com/papers/68d4597b31b076d99fa5cbe7https://doi.org/10.58530/2025/0033
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Motion‐ and Field‐Robust Mesoscopic Whole‐Brain T2*$$ {T}_2^{\ast } $$‐Weighted Imaging at 7 and 11.7 T Using Servo Navigation2026 · 4 citations
  2. 2Run-time motion and f0 control for 3D-EPI fMRI using short servo navigators2025
  3. 3Motion-corrected brain MRI at 64 mT2025
  4. 4High-resolution 0.16-mm time-of-flight angiography at 7 T with volumetric navigators for prospective motion correction2025
  5. 5Combined prospective and retrospective motion correction for high-resolution linescan acquisitions in the human cerebral cortex at 7T2025