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Published on: April 17, 2019
Rectal gas-induced susceptibility artefacts on prostate diffusion-weighted MRI with epi read-out at 3.0 T: does a
Verena Plodeck1, Christoph Georg Radosa2, Hans-Martin Hübner2
1Institut und Poliklinik für Diagnostische und Interventionelle Radiologie, Universitätsklinikum Carl Gustav Carus Dresden, Fetscherstrasse 74, 01307, Dresden, Deutschland. verena.plodeck@uniklinikum-dresden.de.
Purpose:
To assess whether the application of a preparatory micro-enema reduces gas-induced susceptibility artefacts on diffusion-weighted MRI of the prostate.
Methods:
114 consecutive patients who received multiparametric 3 T MRI of the prostate at our institution were retrospectively enrolled. 63 patients self-administered a preparatory micro-enema prior to imaging, and 51 patients underwent MRI without bowel preparation. Two blinded readers independently reviewed the diffusion-weighted sequences regarding gas-induced artefacts. The presence/severity of artefacts was scored ranging from 0 (no artefact) to 3 (severe artefact). A score ≥ 2 was considered a clinically relevant artefact. Maximum rectal width at the level of the prostate was correlated with the administration of a micro-enema. Scores were compared between the scans performed with and without bowel preparation using univariable and multivariable logistic regression, taking into account potential confounding factors (age and prostate volume).
Results:
Significantly less artefacts were found on diffusion-weighted sequences after the administration of a micro-enema shortly prior to MR imaging. Clinically relevant artefacts were found in 10% in the patient group after enema, in 41% without enema. If present, artefacts were also significantly less severe. Mean severity score was 0.3 (enema administered) and 1.2 (no enema), and odds ratio was 0.137 (p < 0.0001) in univariable ordinal logistic regression. Inter-observer agreement was excellent (κ 0.801).
Conclusion:
The use of a preparatory micro-enema prior to 3 T multiparametric prostate MRI significantly reduces both the incidence and severity of gas-induced artefacts on diffusion-weighted sequences and thus improves image quality.
Insights
A preparatory micro-enema significantly reduces gas-induced artifacts on prostate diffusion-weighted MRI. This simple intervention improves image quality by decreasing artifact incidence and severity, aiding in clearer diagnostic imaging.
Area of Science:
- Radiology
- Medical Imaging
Background:
- Diffusion-weighted MRI (DW-MRI) is crucial for prostate cancer assessment.
- Gas-induced susceptibility artifacts can degrade DW-MRI quality, potentially impacting diagnostic accuracy.
- Minimizing artifacts is essential for reliable prostate imaging interpretation.
Purpose of the Study:
- To evaluate the efficacy of a preparatory micro-enema in reducing gas-induced susceptibility artifacts on prostate DW-MRI.
- To determine if micro-enema administration improves image quality for multiparametric MRI of the prostate.
Main Methods:
- Retrospective analysis of 114 patients undergoing 3T multiparametric MRI of the prostate.
- Comparison of DW-MRI sequences between patients who received a micro-enema (n=63) and those who did not (n=51).
- Independent blinded review of diffusion-weighted sequences to score gas-induced artifact presence and severity (0-3 scale).
Main Results:
- Micro-enema use was associated with significantly fewer and less severe gas-induced artifacts on DW-MRI.
- Clinically relevant artifacts (score ≥2) were present in 10% of patients with enema versus 41% without.
- Mean artifact severity scores were 0.3 (enema) and 1.2 (no enema), with excellent inter-observer agreement (κ=0.801).
Conclusions:
- Pre-imaging micro-enema administration is an effective method to reduce gas-induced artifacts in prostate DW-MRI.
- This intervention enhances image quality, leading to more reliable diagnostic interpretations.
- The use of micro-enemas should be considered in prostate MRI protocols to improve image fidelity.
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