Segmental Non-Mass Enhancement Features in Breast Magnetic Resonance Imaging: A Multicenter Retrospective Study of Histopathologic Correlations
Abstract
1. Introduction
2. Materials and Methods
2.1. Study Design and Population
2.2. MRI Acquisition Protocol and Image Analysis
2.3. Statistical Analysis
3. Results
3.1. Patient and Histopathological Characteristics
3.2. Multiparametric Breast MRI Findings
3.2.1. Internal Enhancement Patterns
3.2.2. Mixed Enhancement Patterns
3.2.3. STIR and Diffusion MRI Findings
3.2.4. DCE-MRI Kinetic Features
3.2.5. Inter-Reader Agreement and Consensus Reading
3.3. Multivariate Analysis
3.4. Correlation with Invasion
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
| ACR | American College of Radiology |
| BI-RADS | Breast Imaging Reporting and Data System |
| CRE | clustered ring enhancement |
| DCE | dynamic contrast-enhanced |
| DCIS | ductal carcinoma in situ |
| DWI | diffusion-weighted imaging |
| IDC | invasive ductal carcinoma |
| IEP | internal enhancement pattern |
| MRI | magnetic resonance imaging |
| NME | nonmass enhancement |
| OR | odds ratio |
| PPV | positive predictive value |
| STIR | short tau inversion recovery |
| TIC | time–intensity curve |
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| Characteristics | Benign Lesions (n = 33, 32%) n (%) | Malignant Lesions (n = 70, 68%) n (%) | p Value |
|---|---|---|---|
| Internal enhancement pattern * | 0.002 * | ||
| Clustered ring * | 4 (12.1%) | 28 (40%) | 0.004 * |
| Clumped | 10 (30.3%) | 20 (28.6%) | 0.857 |
| Heterogeneous * | 18 (54.6%) | 15 (21.4%) | 0.001 * |
| Homogeneous | 1 (3.0%) | 7 (10.0%) | 0.431 ** |
| Mixed enhancement pattern (n = 75) | |||
| Present | 4 (18.2%) | 22 (41.5%) | 0.053 |
| Absent | 18 (81.8%) | 31 (58.5%) | |
| Dynamic curve in the initial phase * | <0.001 * | ||
| Slow * | 20 (60.6%) | 12 (17.1%) | <0.001 * |
| Moderate | 7 (21.2%) | 16 (22.9%) | 0.852 |
| Rapid * | 6 (18.2%) | 42 (60%) | <0.001 * |
| Dynamic curve in the delayed phase * | 0.009 * | ||
| Persistent | 15 (45.5%) | 17 (24.3%) | 0.030 * |
| Plateau | 16 (48.5%) | 31 (44.3%) | 0.690 |
| Washout | 2 (6.0%) | 22 (31.4%) | 0.004 * |
| Diffusion restriction | |||
| Present | 19 (57.6%) | 41 (64.1%) | 0.533 |
| Absent | 14 (42.4%) | 23 (35.9%) | |
| Cystic structures on the STIR images | |||
| Present | 10 (30.3%) | 18 (25.7%) | 0.625 |
| Absent | 23 (69.7%) | 52 (74.3%) |
| Univariate Analysis | Multivariate Analysis | |||||||
|---|---|---|---|---|---|---|---|---|
| OR | 95% CI for EXP(B) | p Value | OR | 95% CI for EXP(B) | p Value | |||
| Lower | Upper | Lower | Upper | |||||
| Internal enhancement pattern | ||||||||
| Clustered ring * | 4.833 | 1.531 | 15.258 | 0.007 * | ||||
| Clumped | 0.920 | 0.372 | 2.275 | 0.857 | ||||
| Heterogeneous * | 0.227 | 0.093 | 0.554 | 0.001 * | ||||
| Homogeneous | 3.556 | 0.419 | 30.161 | 0.245 | ||||
| Dynamic curve in the initial phase | ||||||||
| Slow * | 0.134 | 0.053 | 0.343 | 0.000 * | 0.194 | 0.049 | 0.770 | 0.020 |
| Moderate | 1.101 | 0.403 | 3.003 | 0.852 | ||||
| Rapid * | 6.750 | 2.469 | 18.451 | 0.000 * | 5.133 | 1.164 | 22.637 | 0.031 |
| Dynamic curve in the delayed phase | ||||||||
| Persistent * | 0.385 | 0.160 | 0.925 | 0.033 * | ||||
| Plateau | 0.845 | 0.368 | 1.936 | 0.690 | ||||
| Washout * | 7.104 | 1.559 | 32.363 | 0.011 * | ||||
| Mixed IEP | 3.194 | 0.949 | 10.746 | 0.061 | ||||
| Diffusion restriction | 1.314 | 0.557 | 3.100 | 0.534 | ||||
| Classification | Lesions |
|---|---|
| Benign | Pseudoangiomatous stromal hyperplasia, usual ductal hyperplasia, apocrine metaplasia, adenosis and fibrocystic changes, duct ectasia and periductal fibrosis, fibroadenoma, silicone granuloma, sclerosing adenosis, inflammation, granulomatous mastitis, post-radiation changes, normal breast tissue |
| High-risk | Atypical ductal hyperplasia, intraductal papilloma, peripheral papillomatosis, radial scar, complex sclerosing lesion, flat epithelial atypia |
| Malignant | Ductal carcinoma in situ (DCIS), invasive ductal carcinoma, invasive lobular carcinoma, tubular carcinoma, inflammatory breast cancer, papillary carcinoma, mucinous carcinoma, apocrine carcinoma, invasive micropapillary carcinoma, Paget’s disease, glycogen-rich clear cell carcinoma |
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Aydin, H.; Bozkurt, C.; Hayme, S.; Bilge, A.C.; Oztekin, P.S.; Avdan Aslan, A.; Ozcan, I.; Gultekin, S.; Eren, A.; Durur Subası, I. Segmental Non-Mass Enhancement Features in Breast Magnetic Resonance Imaging: A Multicenter Retrospective Study of Histopathologic Correlations. Diagnostics 2025, 15, 3084. https://doi.org/10.3390/diagnostics15233084
Aydin H, Bozkurt C, Hayme S, Bilge AC, Oztekin PS, Avdan Aslan A, Ozcan I, Gultekin S, Eren A, Durur Subası I. Segmental Non-Mass Enhancement Features in Breast Magnetic Resonance Imaging: A Multicenter Retrospective Study of Histopathologic Correlations. Diagnostics. 2025; 15(23):3084. https://doi.org/10.3390/diagnostics15233084
Chicago/Turabian StyleAydin, Hale, Cansu Bozkurt, Serhat Hayme, Almila Coskun Bilge, Pelin Seher Oztekin, Aydan Avdan Aslan, Irem Ozcan, Serap Gultekin, Abdulkadir Eren, and Irmak Durur Subası. 2025. "Segmental Non-Mass Enhancement Features in Breast Magnetic Resonance Imaging: A Multicenter Retrospective Study of Histopathologic Correlations" Diagnostics 15, no. 23: 3084. https://doi.org/10.3390/diagnostics15233084
APA StyleAydin, H., Bozkurt, C., Hayme, S., Bilge, A. C., Oztekin, P. S., Avdan Aslan, A., Ozcan, I., Gultekin, S., Eren, A., & Durur Subası, I. (2025). Segmental Non-Mass Enhancement Features in Breast Magnetic Resonance Imaging: A Multicenter Retrospective Study of Histopathologic Correlations. Diagnostics, 15(23), 3084. https://doi.org/10.3390/diagnostics15233084

