From Research to Clinic: First Prospective Evaluation of Volumetric Deep-Learning Super-Resolution in 3D T2-Weighted Breast MRI
Author Block: N. Mesropyan1, O. Weber2, A. Isaak1, H. Peeters3, C. Katemann2, J. A. Luetkens1; 1Bonn/DE, 2Hamburg/DE, 3Best/NL
Purpose: To evaluate, a fully volumetric deep-learning(DL) super-resolution research prototype combining compressed sensing with denoising and resolution upscaling for 3D T2-weighted (T2w) breast MRI, and to quantify its impact on acquisition time, image quality, and BI-RADS agreement.
Methods or Background: This prospective single-center study was conducted on a 1.5-T MRI. Two Cartesian 3D T2w acquisitions with low and normal resolution were acquired and reconstructed with the DL framework to yield T2DL and T2NR+DL. Acquisition time, quantitative image quality (apparent signal-to-noise (aSNR), apparent contrast-to-noise (aCNR)) and qualitative scores (5-point Likert scale: overall quality, sharpness, conspicuity, morphology, artifacts) were obtained in randomized, blinded reading sessions. BI-RADS agreement between different protocol types with the final score were assessed. Kruskal–Wallis one-way analysis of variance followed by Dunn’s post hoc test, intraclass correlation coefficients (ICCs), and Cohen k test were used for statistical analysis.
Results or Findings: 64 women (mean age 55±13 years; range 28–84) were investigated. Acquisition time decreased by 41% for T2DL vs T2NR (126 vs 215 seconds). Quantitative quality improved with DL (e.g., for aSNR: 28.5±7.3 [T2NR] vs 36.6±10.9 [T2DL] vs 45.7±10.3 [T2NR+DL]; for aCNR: 21.8±5.6 [T2NR] vs 25.9±8.6 [T2DL] vs 35.3±9.1 [T2NR+DL]; all P<.001). Qualitative image quality was highest for T2NR+DL (for reader 2: overall quality: for T2NR+DL 5 [IQR 5–5] vs 4 [4-5] for T2 DL vs. 4 [3–4] for T2NR; P<.001). Inter-reader agreement for image quality assessment was good to excellent, ICCs rages 0.79–0.96 (CI:0.65-0.98). BI-RADS agreement was strong across all 3D DL protocols, Cohen k ranges 0.98–0.99 (CI: 0.98-0.99).
Conclusion: This volumetric DL super-resolution approach enables faster 3D T2w breast MRI while enhancing image quality. Alternatively, at unchanged acquisition time, it can further improve the quality of normal-resolution images.
Limitations: Research prototype was used in this study.
Funding for this study: None
Has your study been approved by an ethics committee? Yes
Ethics committee - additional information: Approved by the ethic committee of the University Hospital Bonn.