Prevalence and influencing factors for artifact development in breast MRI-derived maximum intensity projections
Lorenz A Kapsner1,2, Eva L Balbach1, Frederik B Laun1
1Institute of Radiology, Universitätsklinikum Erlangen, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Erlangen, Germany.
Background:
Magnetic resonance imaging (MRI) provides high diagnostic sensitivity for breast cancer. However, MRI artifacts may impede the diagnostic assessment. This is particularly important when evaluating maximum intensity projections (MIPs), such as in abbreviated MRI (AB-MRI) protocols, because high image quality is desired as a result of fewer sequences being available to compensate for problems.
Purpose:
To describe the prevalence of artifacts on dynamic contrast enhanced (DCE) MRI-derived MIPs and to investigate potentially associated attributes.
Material And Methods:
For this institutional review board approved retrospective analysis, MIPs were generated from subtraction series and cropped to represent the left and right breasts as regions of interest. These images were labeled by three independent raters regarding the presence of MRI artifacts. MRI artifact prevalence and associations with patient characteristics and technical attributes were analyzed using descriptive statistics and generalized linear models (GLMMs).
Results:
The study included 2524 examinations from 1794 patients (median age 50 years), performed on 1.5 and 3.0 Tesla MRI systems. Overall inter-rater agreement was kappa = 0.54. Prevalence of significant unilateral artifacts was 29.2% (736/2524), whereas bilateral artifacts were present in 37.8% (953/2524) of all examinations. According to the GLMM, artifacts were significantly positive associated with age (odds ratio [OR] = 1.52) and magnetic field strength (OR = 1.55), whereas a negative effect could be shown for body mass index (OR = 0.95).
Conclusion:
MRI artifacts on DCE subtraction MIPs of the breast, as used in AB-MRI, are a relevant topic. Our results show that, besides the magnetic field strength, further associated attributes are patient age and body mass index, which can provide possible targets for artifact reduction.
Insights
Magnetic resonance imaging (MRI) artifacts are common in abbreviated breast MRI protocols. Patient age and higher magnetic field strength increase artifact risk, while body mass index may reduce it.
Area of Science:
- Radiology
- Medical Imaging
- Breast Cancer Detection
Background:
- Magnetic resonance imaging (MRI) offers high sensitivity for breast cancer diagnosis.
- MRI artifacts can hinder diagnostic accuracy, especially in abbreviated MRI (AB-MRI) protocols relying on maximum intensity projections (MIPs).
Purpose of the Study:
- To determine the prevalence of artifacts in dynamic contrast-enhanced (DCE) MRI-derived MIPs.
- To identify patient and technical factors associated with these artifacts.
Main Methods:
- Retrospective analysis of 2524 DCE-MRI examinations from 1794 patients.
- MIPs were generated and assessed for artifacts by three independent raters.
- Statistical models (GLMM) analyzed associations between artifacts and patient/technical factors.
Main Results:
- Significant unilateral artifacts occurred in 29.2% and bilateral in 37.8% of examinations.
- Artifacts were positively associated with patient age (OR=1.52) and magnetic field strength (OR=1.55).
- Body mass index showed a negative association (OR=0.95).
Conclusions:
- MRI artifacts on DCE subtraction MIPs in AB-MRI are a significant issue.
- Patient age and magnetic field strength are key factors associated with artifact prevalence.
- Body mass index may offer a target for artifact reduction strategies.
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