Objectives <p>To compare three-dimensional fat-suppressed fluid-attenuated inversion recovery (3D-fsFLAIR) with three-dimensional fat-suppressed T1-weighted imaging (3D-fsT1WI) for detecting superior vestibular nerve (SVN) enhancement in acute unilateral vestibulopathy (AUVP), and to determine the optimal post-contrast imaging time.</p> Materials and methods <p>This single-center prospective cohort study enrolled consecutive patients who underwent 3D-fsFLAIR and 3D-fsT1WI at 0 min, 15 min, 1 h, and 4 h post-contrast between April 2022 and May 2023. Two blinded radiologists independently scored asymmetric enhancement of the SVN on both sequences and, using 3D-fsFLAIR alone, measured the SVN signal intensity ratio (SIR) and signal-to-noise ratio (SNR) quantitatively while also qualitatively grading asymmetric inner-ear enhancement. Statistical analyses employed generalized linear mixed models, nested linear mixed-effects models, and Friedman tests.</p> Results <p>The study included 54 AUVP patients (mean age, 44.87 ± 11.47 years; 29 men). 3D-fsFLAIR yielded significantly higher asymmetric SVN enhancement scores than 3D-fsT1WI at every time point, with both sequences achieving peak visualization at 1 h (all <i>p</i> &lt; 0.001). Quantitative analysis on 3D-fsFLAIR showed significantly elevated SIR and SNR in the affected SVN at 1 h and 4 h compared with 0 min and 15 min (all <i>p</i> &lt; 0.001), with no significant difference between the 1 h and 4 h. Similarly, asymmetric inner-ear enhancement scores were greater at 1 h and 4 h than in the early phases (all <i>p</i> &lt; 0.05), but plateaued after 1 h (<i>p</i> = 0.29).</p> Conclusion <p>The 1 h delayed 3D-fsFLAIR protocol optimized AUVP evaluation, offered superior lesion detection, and clinical practicality.</p> Key Points <p><Emphasis Type="BoldItalic">Question</Emphasis> <i>The optimal sequence selection between 3D-fsFLAIR and 3D-fsT1WI for AUVP evaluation and the ideal post-contrast timing remain to be determined</i>.</p> <p><Emphasis Type="BoldItalic">Findings</Emphasis> <i>The optimal protocol for AUVP evaluation is the 1 h post-contrast delayed 3D-fsFLAIR sequence, which provides superior lesion detection capability and enhanced clinical practicality</i>.</p> <p><Emphasis Type="BoldItalic">Clinical relevance</Emphasis> <i>The 1 h delayed 3D-fsFLAIR protocol provides optimal visualization of vestibular nerve and inner ear abnormalities in AUVP, enabling more confident clinical assessment without requiring longer delays (e.g., 4 h)</i>.</p> Graphical Abstract <p></p>

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Optimal MRI protocol for acute unilateral vestibulopathy: 3D-fsFLAIR vs 3D-fsT1WI at multiple post-contrast time points

  • Na Hu,
  • Jinye Li,
  • Hui Zhao,
  • Guanghong Yue,
  • Linsheng Wang,
  • Dmytro Pylypenko,
  • Tianyong Xu,
  • Shijun Su,
  • Chuanting Li

摘要

Objectives

To compare three-dimensional fat-suppressed fluid-attenuated inversion recovery (3D-fsFLAIR) with three-dimensional fat-suppressed T1-weighted imaging (3D-fsT1WI) for detecting superior vestibular nerve (SVN) enhancement in acute unilateral vestibulopathy (AUVP), and to determine the optimal post-contrast imaging time.

Materials and methods

This single-center prospective cohort study enrolled consecutive patients who underwent 3D-fsFLAIR and 3D-fsT1WI at 0 min, 15 min, 1 h, and 4 h post-contrast between April 2022 and May 2023. Two blinded radiologists independently scored asymmetric enhancement of the SVN on both sequences and, using 3D-fsFLAIR alone, measured the SVN signal intensity ratio (SIR) and signal-to-noise ratio (SNR) quantitatively while also qualitatively grading asymmetric inner-ear enhancement. Statistical analyses employed generalized linear mixed models, nested linear mixed-effects models, and Friedman tests.

Results

The study included 54 AUVP patients (mean age, 44.87 ± 11.47 years; 29 men). 3D-fsFLAIR yielded significantly higher asymmetric SVN enhancement scores than 3D-fsT1WI at every time point, with both sequences achieving peak visualization at 1 h (all p < 0.001). Quantitative analysis on 3D-fsFLAIR showed significantly elevated SIR and SNR in the affected SVN at 1 h and 4 h compared with 0 min and 15 min (all p < 0.001), with no significant difference between the 1 h and 4 h. Similarly, asymmetric inner-ear enhancement scores were greater at 1 h and 4 h than in the early phases (all p < 0.05), but plateaued after 1 h (p = 0.29).

Conclusion

The 1 h delayed 3D-fsFLAIR protocol optimized AUVP evaluation, offered superior lesion detection, and clinical practicality.

Key Points

Question The optimal sequence selection between 3D-fsFLAIR and 3D-fsT1WI for AUVP evaluation and the ideal post-contrast timing remain to be determined.

Findings The optimal protocol for AUVP evaluation is the 1 h post-contrast delayed 3D-fsFLAIR sequence, which provides superior lesion detection capability and enhanced clinical practicality.

Clinical relevance The 1 h delayed 3D-fsFLAIR protocol provides optimal visualization of vestibular nerve and inner ear abnormalities in AUVP, enabling more confident clinical assessment without requiring longer delays (e.g., 4 h).

Graphical Abstract