arXiv:2507.15146cs.ETcs.AI2025-07中稿 · IEEE Global Humani…

为偏远地区设计可离线运行的便携式电子病历系统,支持贫血筛查。

Design of an Edge-based Portable EHR System for Anemia Screening in Remote Health Applications

  • 基于边缘计算的便携式病历系统,支持离线存储与加密同步。
  • 通过指甲苍白分析实现贫血筛查,测试误差仅1.490 g/dL。
  • 模型量化后推理速度提升一倍,适合低算力设备部署。

针对资源匮乏地区的远程医疗系统面临互操作性差、缺乏离线支持及对高成本基础设施依赖等问题。本文提出一种面向离线优先的便携式电子健康记录平台,运行于小型嵌入式设备上,提供AES-256加密本地存储,并支持可选云端同步以保障互操作性。作为应用场景,集成了一种基于指甲苍白分析的无创贫血筛查模块。该模型在250例患者数据(贫血患病率27%)上训练,采用KDE平衡数据,随机森林测试的均方根误差(RMSE)为1.969 g/dL,平均绝对误差(MAE)为1.490 g/dL;分层严重程度模型敏感度达79.2%。为优化性能,使用YOLOv8n的指甲床检测器进行INT8量化,推理延迟从46.96毫秒降至21.50毫秒,同时保持[email protected]为0.995。系统强调低成本部署、模块化设计和数据隐私合规(符合HIPAA/GDPR),有效应对数字健康在断网环境中的推广障碍。本工作展示了可扩展的便携式医疗信息解决方案,助力基层医疗在偏远地区的发展。

原文摘要 · Abstract (English)

The design of medical systems for remote, resource-limited environments faces persistent challenges due to poor interoperability, lack of offline support, and dependency on costly infrastructure. Many existing digital health solutions neglect these constraints, limiting their effectiveness for frontline health workers in underserved regions. This paper presents a portable, edge-enabled Electronic Health Record platform optimized for offline-first operation, secure patient data management, and modular diagnostic integration. Running on small-form factor embedded devices, it provides AES-256 encrypted local storage with optional cloud synchronization for interoperability. As a use case, we integrated a non-invasive anemia screening module leveraging fingernail pallor analysis. Trained on 250 patient cases (27\% anemia prevalence) with KDE-balanced data, the Random Forest model achieved a test RMSE of 1.969 g/dL and MAE of 1.490 g/dL. A severity-based model reached 79.2\% sensitivity. To optimize performance, a YOLOv8n-based nail bed detector was quantized to INT8, reducing inference latency from 46.96 ms to 21.50 ms while maintaining [email protected] at 0.995. The system emphasizes low-cost deployment, modularity, and data privacy compliance (HIPAA/GDPR), addressing critical barriers to digital health adoption in disconnected settings. Our work demonstrates a scalable approach to enhance portable health information systems and support frontline healthcare in underserved regions.

电子病历边缘计算贫血筛查离线系统

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