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September 5, 2025Magnetic Resonance in Medicine0 citationsOpen Access

Feasibility of tagged MRI at 0.55 T

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PKPrakash KumarKNKrishna S. Nayak

Key Points

  • Tagged MRI shows feasibility at 0.55 T, revealing potential for functional analysis in muscle motion.
  • At optimal conditions, the bSSFP method improved the signal-to-noise ratio by 1.35-fold compared to GRE.
  • Experiments involved healthy volunteers with cardiac scans acquired during 18s breath-holds for accurate imaging.
  • Tag persistence measured 851 ms for bSSFP imaging, indicating suitability for visualizing muscle dynamics during speech.

Abstract

Abstract Purpose To determine the feasibility of tagged MRI at 0.55 T and tag persistence for cardiac and speech production applications. This is particularly challenging due to the short muscle T 1 at 0.55 T (701 ms) and requires advanced techniques for maximizing initial tag contrast and signal‐to‐noise ratio (SNR)–efficient imaging. Methods Tagged MRI was performed using phase‐sensitive tagging (REALTAG) two‐dimensional grid‐based preparation and spiral balanced steady‐state free precession (bSSFP) imaging. Experiments were performed in healthy adult volunteers using a 0.55 T MRI system with high‐performance gradients on two functional anatomies. Cardiac scans had 7.5‐mm tag spacing, 1.3‐mm 2 in‐plane resolution, and were acquired during about 18s breath‐holds. Speech scans had 10‐mm tag spacing, 2‐mm 2 spatial resolution, and were acquired in real time. Resulting tagged images were compared with conventional gradient‐recalled echo (GRE). Tag persistence and tag contrast‐to‐noise ratio were measured and compared. Results REALTAG preparation and phase‐sensitive reconstruction resulted in taglines that recover quickly when compared to 1.5 T, for both bSSFP and GRE imaging approaches. The bSSFP approach, at optimal flip angles, provided a 1.35‐fold improved SNR and 1.6‐fold improved tag persistence. For a tag contrast‐to‐noise ratio threshold of 6, the tag persistence was about 506 ms for GRE and about 851 ms for bSSFP. Conclusion Tagged MRI is feasible at 0.55 T and can be used for functional analysis of muscle motion such as cardiac and speech applications, despite the short T 1 . Spiral bSSFP along with REALTAG preparation pulses provide adequate SNR and contrast to visualize cardiac systolic mechanics and to visualize tongue deformation during short speech utterances.

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Cite This Study

Kumar et al. (2025) studied this question.

synapsesocial.com/papers/68bb5f266d6d5674bcd0300ahttps://doi.org/10.1002/mrm.70060
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