A hybrid diffusion/inpainting pipeline grows a 656-image dermatology set into 266k synthetic images, lifting DDI malignancy classification to 90.9% and improving skin-tone fairness metrics.
From Majority to Minority: A Diffusion-based Augmentation for Underrepresented Groups in Skin Lesion Analysis
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abstract
AI-based diagnoses have demonstrated dermatologist-level performance in classifying skin cancer. However, such systems are prone to under-performing when tested on data from minority groups that lack sufficient representation in the training sets. Although data collection and annotation offer the best means for promoting minority groups, these processes are costly and time-consuming. Prior works have suggested that data from majority groups may serve as a valuable information source to supplement the training of diagnosis tools for minority groups. In this work, we propose an effective diffusion-based augmentation framework that maximizes the use of rich information from majority groups to benefit minority groups. Using groups with different skin types as a case study, our results show that the proposed framework can generate synthetic images that improve diagnostic results for the minority groups, even when there is little or no reference data from these target groups. The practical value of our work is evident in medical imaging analysis, where under-diagnosis persists as a problem for certain groups due to insufficient representation.
fields
cs.CV 1years
2026 1verdicts
CONDITIONAL 1representative citing papers
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Controllable Generation of Diverse Dermatological Imagery for Fair and Efficient Malignancy Classification
A hybrid diffusion/inpainting pipeline grows a 656-image dermatology set into 266k synthetic images, lifting DDI malignancy classification to 90.9% and improving skin-tone fairness metrics.