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Comparison of golden-angle radial sparse parallel (GRASP) and conventional cartesian sampling in 3D dynamic contrast-enhanced mri for bladder cancer: a preliminary study. | LitMetric

AI Article Synopsis

  • - The study aimed to compare the quality of bladder cancer images obtained through the 3D Dynamic contrast-enhanced (DCE)-MRI using the GRASP technique versus traditional Cartesian sampling, focusing on image quality, agreement among radiologists, and diagnostic effectiveness.
  • - Results showed that GRASP notably improved overall image quality, tumor visibility, and reduced motion artifacts, achieving higher scores in multiple categories, including signal-to-noise and contrast-to-noise ratios.
  • - While GRASP did not show significant differences in diagnostic capability or agreement among readers compared to Cartesian, it demonstrated a tendency for better performance in these areas, suggesting it could enhance clinical workflows for assessing muscle-invasive bladder cancer.

Article Abstract

Purpose: To compare the image quality, inter-reader agreement, and diagnostic capability for muscle-invasive bladder cancer (MIBC) of the reconstructed images in sections orthogonal to the bladder tumor obtained by 3D Dynamic contrast-enhanced (DCE)-MRI using the Golden-angle Radial Sparse Parallel (GRASP) technique with the images directly captured using the Cartesian sampling.

Materials And Methods: This study involved 68 initial cases of bladder cancer examined with DCE-MRI (GRASP: n = 34, Cartesian: n = 34) at 3 Tesla. Four radiologists conducted qualitative evaluations (overall image quality, absence of motion artifact, absence of streak artifact, and tumor conspicuity) using a five-point Likert scale (5 = Excellent/None) and quantitative signal-to-noise ratio (SNR) and contrast-to-noise ratio (CNR) measurements. The areas under the receiver-operating characteristic curves (AUCs) for the Vesical Imaging-Reporting and Data System (VI-RADS) DCE score for MIBC assessment were calculated. Inter-reader agreement was also assessed.

Results: GRASP notably enhanced overall image quality (pooled score: GRASP 4 vs. Cartesian 3, P < 0.0001), tumor conspicuity (5 vs. 3, P < 0.05), SNR (Median 38.2 vs. 19.0, P < 0.0001), and CNR (7.9 vs. 6.0, P = 0.005), with fewer motion artifacts (5 vs. 3, P < 0.0001) and minor streak artifacts (5 vs. 5, P > 0.05). Although no significant differences were observed, the GRASP group tended to have higher AUCs for MIBC (pooled AUCs: 0.92 vs. 0.88) and showed a trend toward higher inter-reader agreement (pooled kappa-value: 0.70 vs. 0.63) compared to the Cartesian group.

Conclusions: Using the GRASP for 3D DCE-MRI, the reconstructed images in sections orthogonal to the bladder tumor achieved higher image quality and improve the clinical work flow, compared to the images directly captured using the Cartesian. GRASP tended to have higher diagnostic ability for MIBC and showed a trend toward higher inter-reader agreement compared to the Cartesian.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11588826PMC
http://dx.doi.org/10.1007/s11604-024-01637-wDOI Listing

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