Suppr超能文献

医疗保健机器人技术本体(HERON):医疗保健机器人技术中用于通信、协作和安全的上层本体。

HEalthcare Robotics' ONtology (HERON): An Upper Ontology for Communication, Collaboration and Safety in Healthcare Robotics.

作者信息

Ioannidou Penelope, Vezakis Ioannis, Haritou Maria, Petropoulou Rania, Miloulis Stavros T, Kouris Ioannis, Bromis Konstantinos, Matsopoulos George K, Koutsouris Dimitrios D

机构信息

Biomedical Engineering Laboratory, School of Electrical & Computer Engineering, National Technical University of Athens, 9 Iroon Polytechniou St., 15780 Athens, Greece.

Biomedical Engineering Laboratory, Institute of Communication and Computer Systems, National Technical University of Athens, 9 Iroon Polytechniou St., 15780 Athens, Greece.

出版信息

Healthcare (Basel). 2025 Apr 30;13(9):1031. doi: 10.3390/healthcare13091031.

Abstract

Healthcare robotics needs context-aware policy-compliant reasoning to achieve safe human-agent collaboration. The current ontologies fail to provide healthcare-relevant information and flexible semantic enforcement systems. HERON represents a modular upper ontology which enables healthcare robotic systems to communicate and collaborate while ensuring safety during operations. The system enables domain-specific instantiations through SPARQL queries and SHACL-based constraint validation to perform context-driven logic. The system models robotic task interactions through simulated eldercare and diagnostic and surgical support scenarios which follow ethical and regulatory standards. The validation tests demonstrated HERON's capacity to enable safe and explainable autonomous operations in changing environments. The semantic constraints enforced proper eligibility for roles and privacy conditions and policy override functionality during agent task execution. The HERON system demonstrated compatibility with healthcare IT systems and demonstrated adaptability to the GDPR and other policy frameworks. The semantically rich framework of HERON establishes an interoperable foundation for healthcare robotics. The system architecture maintains an open design which enables HL7/FHIR standard integration and robotic middleware compatibility. HERON demonstrates superior healthcare-specific capabilities through its evaluation against SUMO HL7 and MIMO. The future research will focus on optimizing HERON for low-resource clinical environments while extending its applications to remote care emergency triage and adaptive human-robot collaboration.

摘要

医疗保健机器人技术需要情境感知且符合政策的推理,以实现人与机器人的安全协作。当前的本体无法提供与医疗保健相关的信息以及灵活的语义执行系统。HERON代表一种模块化上层本体,它能使医疗保健机器人系统进行通信与协作,同时确保操作过程中的安全。该系统通过SPARQL查询和基于SHACL的约束验证实现特定领域的实例化,以执行上下文驱动的逻辑。该系统通过模拟遵循伦理和监管标准的老年护理以及诊断和手术支持场景,对机器人任务交互进行建模。验证测试证明了HERON在不断变化的环境中实现安全且可解释的自主操作的能力。语义约束在智能体任务执行期间对角色的适当资格、隐私条件和策略覆盖功能进行了强制执行。HERON系统展示了与医疗保健信息技术系统的兼容性,并证明了其对通用数据保护条例(GDPR)和其他政策框架的适应性。HERON语义丰富的框架为医疗保健机器人技术建立了一个可互操作的基础。系统架构保持开放设计,实现了HL7/FHIR标准集成和机器人中间件兼容性。通过与SUMO HL7和MIMO对比评估,HERON展示了卓越的医疗保健特定能力。未来的研究将专注于针对低资源临床环境优化HERON,同时将其应用扩展到远程护理、紧急分诊和自适应人机协作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f60/12071619/9c724198f3f9/healthcare-13-01031-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验