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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

Ultra-fast multi-parametric quantitative imaging of the head and neck via 3D SSFP-multiple overlapping echo detachment (SSFP-MOLED)

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JYJinyi YangKXKai XiongQYQinqin Yang

Key Points

  • The 3D SSFP-MOLED method yielded multi-parametric quantification results comparable to standard techniques, enhancing imaging speed and efficiency.
  • Quantitative imaging metrics, including M0, T1, T2, T2*, B1+, and ΔB0, were obtained with minimal artifacts and high reproducibility.
  • Testing on both phantom and in-vivo samples confirmed the technique's stability and accuracy across multiple assessments.
  • This ultra-fast imaging approach offers a practical solution for clinical diagnostics in head and neck diseases, improving patient care.

Abstract

Motivation: Acquisition of multi-parametric quantitative imaging data in the head and neck region is time-consuming and highly susceptible to artifacts due to subject motion. Goal(s): An ultra-fast method was developed to simultaneously achieve multiparametric quantification of M0, T1, T2, T2*, B1+, and ΔB0 in the head and neck. Approach: 3D SSFP-MOLED sequence was used for multi-parametric quantitative imaging of the head and neck. The method was tested on phantom and in-vivo, and stability was verified through scan-rescan experiments. Results: The 3D SSFP-MOLED multi-parametric quantification results were in good agreement with the reference method and had good reproducibility. Impact: 3D SSFP-MOLED can achieve ultra-fast multi-parameter quantification of M0, T1, T2, T2*, B1+, ΔB0, with the characteristics of no distortion and self-registration, and has the potential for auxiliary clinical diagnosis of head and neck diseases.

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Cite This Study

Yang et al. (2025) studied this question.

synapsesocial.com/papers/68d45b2931b076d99fa5da84https://doi.org/10.58530/2025/3210
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