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DFLMoE: Decentralized Federated Learning via Mixture of Experts for Medical Data Analysis

  • Luyuan Xie
  • , Tianyu Luan
  • , Wenyuan Cai
  • , Guochen Yan
  • , Zhaoyu Chen
  • , Nan Xi
  • , Yuejian Fang
  • , Qingni Shen
  • , Zhonghai Wu
  • , Junsong Yuan
  • Peking University
  • PKU-OCTA Laboratory for Blockchain and Privacy Computing
  • SUNY Buffalo

Research output: Contribution to journalConference articlepeer-review

11 Scopus citations

Abstract

Federated learning has wide applications in the medical field. It enables knowledge sharing among different healthcare institutes while protecting patients' privacy. However, existing federated learning systems are typically centralized, requiring clients to upload client-specific knowledge to a central server for aggregation. This centralized approach would integrate the knowledge from each client into a centralized server, and the knowledge would be already undermined during the centralized integration before it reaches back to each client. Besides, the centralized approach also creates a dependency on the central server, which may affect training stability if the server malfunctions or connections are unstable. To address these issues, we propose a decentralized federated learning framework named dFLMoE. In our framework, clients directly exchange lightweight head models with each other. After exchanging, each client treats both local and received head models as individual experts, and utilizes a client-specific Mixture of Experts (MoE) approach to make collective decisions. This design not only reduces the knowledge damage with client-specific aggregations but also removes the dependency on the central server to enhance the robustness of the framework. We validate our framework on multiple medical tasks, demonstrating that our method evidently outperforms state-of-the-art approaches under both model homogeneity and heterogeneity settings.

Original languageEnglish
Pages (from-to)10203-10213
Number of pages11
JournalProceedings of the IEEE Computer Society Conference on Computer Vision and Pattern Recognition
DOIs
StatePublished - 2025
Event2025 IEEE/CVF Conference on Computer Vision and Pattern Recognition, CVPR 2025 - Nashville, United States
Duration: Jun 11 2025Jun 15 2025

Keywords

  • decentralized federated learning
  • medical data analysis
  • mixture of experts

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