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Federated Model Aggregation via Self-Supervised Priors for Highly Imbalanced Medical Image Classification

27 Jul 2023arXiv:2307.14959archive 2025-07-28

Marawan Elbatel, Hualiang Wang, Robert Martí, Huazhu Fu, Xiaomeng Li

In the medical field, federated learning commonly deals with highly imbalanced datasets, including skin lesions and gastrointestinal images. Existing federated methods under highly imbalanced datasets primarily focus on optimizing a global model without incorporating the intra-class variations that can arise in medical imaging due to different populations, findings, and scanners. In this paper, we study the inter-client intra-class variations with publicly available self-supervised auxiliary networks. Specifically, we find that employing a shared auxiliary pre-trained model, like MoCo-V2, locally on every client yields consistent divergence measurements. Based on these findings, we derive a dynamic balanced model aggregation via self-supervised priors (MAS) to guide the global model optimization. Fed-MAS can be utilized with different local learning methods for effective model aggregation toward a highly robust and unbiased global model. Our code is available at \url{https://github.com/xmed-lab/Fed-MAS}.

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get_pre_trained_model_dict xmed-lab/fed-mas/methods/utils.py official repository unverified no licence file found · pointer only · 96e2448424d42b6b · report
resnet50 xmed-lab/fed-mas/models/resnet.py official repository unverified no licence file found · pointer only · 92e0459cb8440d39 · report
resnet8 xmed-lab/fed-mas/models/resnet8.py official repository unverified no licence file found · pointer only · 888e738c6c938660 · report

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Federated LearningImage ClassificationMedical Image ClassificationModel Optimizationimage-classification

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