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◆ Polish journal of radiology2026-01-01

Fractal analysis of tumor subregions differentiates benign from malignant breast lesions.

Lei Jiang, Run Xu, Lingdi Qin, Zeyang Miao, Dan Yu, Peng Luo, Guanwu Li

一句话结论 · In one sentence

Subregional FD of tumor habitats demonstrated superior diagnostic accuracy in differentiating between benign malignant breast tumors compared to the heterogeneity of the whole lesion.

原始摘要(英文原文)· Original abstract
PURPOSE: This study aimed to evaluate the effectiveness of fractal analysis in distinguishing between benign and malignant breast lesions based on tumor subregion complexity and spatial heterogeneity. MATERIAL AND METHODS: Breast diffusion-weighted imaging and dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) data from biopsy- and surgery-confirmed malignant (n = 75) and benign tumors (n = 32) were used to evaluate the whole-lesion heterogeneity and subregional fractal dimension (FD) using habitat imaging. Inter-reader variability in 3D region of interest definition was assessed using the Dice similarity coefficient. Receiver operating characteristic curve (ROC) analysis was conducted to assess the diagnostic performance of studied parameters in differentiating benign from malignant lesions. RESULTS: The overall Dice similarity coefficient across all lesion classes was 0.86 (95% confidence interval [CI]: 0.79-0.96). The inter-reader reliability was excellent, with intraclass correlation coefficients > 0.90 for FD. Significant differences were observed between malignant and benign lesions in hypervascular cellular FD (p < 0.001) and hypovascular cellular FD (p = 0.011), but not in nonviable tissue FD (p = 0.568). Patients with malignant lesions exhibited significantly higher median heterogeneity of the whole lesion compared to those with benign lesions (p = 0.015). Among the FD features generated by habitat imaging, hypervascular cellular FD had the highest area under the ROC curve (0.925, 95% CI: 0.854-0.969), surpassing the total heterogeneity (0.671, 95% CI: 0.568-0.763). Sensitivity and specificity of 89.3% and 81.8%, respectively, were achieved in distinguishing benign from malignant lesions. CONCLUSIONS: Subregional FD of tumor habitats demonstrated superior diagnostic accuracy in differentiating between benign malignant breast tumors compared to the heterogeneity of the whole lesion.
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Fractal analysis of tumor subregions differentiates benign from malignant breast lesions. — 科研速览 Science Skim