Multimodal Learning 相关度: 7/10

A Utility-preserving De-identification Pipeline for Cross-hospital Radiology Data Sharing

Chenhao Liu, Zelin Wen, Yan Tong, Junjie Zhu, Xinyu Tian, Yuchi Liu, Ashu Gupta, Syed M. S. Islam, Tom Gedeon, Yue Yao
arXiv: 2604.07128v1 发布: 2026-04-08 更新: 2026-04-08

AI 摘要

提出一种实用性保护的去识别流程,用于跨医院放射影像数据共享,提升AI模型性能并保护隐私。

主要贡献

  • 提出实用性保护的去识别流程(UPDP)
  • 使用生成过滤机制合成隐私过滤和病理保留的图像
  • 验证了去识别数据在跨医院场景的有效性

方法论

构建隐私敏感词黑名单和病理相关词白名单,使用生成模型过滤图像,并结合ID过滤的报告。

原文摘要

Large-scale radiology data are critical for developing robust medical AI systems. However, sharing such data across hospitals remains heavily constrained by privacy concerns. Existing de-identification research in radiology mainly focus on removing identifiable information to enable compliant data release. Yet whether de-identified radiology data can still preserve sufficient utility for large-scale vision-language model training and cross-hospital transfer remains underexplored. In this paper, we introduce a utility-preserving de-identification pipeline (UPDP) for cross-hospital radiology data sharing. Specifically, we compile a blacklist of privacy-sensitive terms and a whitelist of pathology-related terms. For radiology images, we use a generative filtering mechanism that synthesis a privacy-filtered and pathology-reserved counterparts of the original images. These synthetic image counterparts, together with ID-filtered reports, can then be securely shared across hospitals for downstream model development and evaluation. Experiments on public chest X-ray benchmarks demonstrate that our method effectively removes privacy-sensitive information while preserving diagnostically relevant pathology cues. Models trained on the de-identified data maintain competitive diagnostic accuracy compared with those trained on the original data, while exhibiting a marked decline in identity-related accuracy, confirming effective privacy protection. In the cross-hospital setting, we further show that de-identified data can be combined with local data to yield better performance.

标签

放射影像 数据去识别 隐私保护 联邦学习

arXiv 分类

cs.CV