Atos Research & Innovation, Atos Spain S.A, Madrid, Spain
Information Systems, University of Haifa, Haifa, Israel.
J Am Med Inform Assoc. 2015 May;22(3):587-99. doi: 10.1093/jamia/ocv003. Epub 2015 Apr 15.
We show how the HL7 Virtual Medical Record (vMR) standard can be used to design and implement a data integrator (DI) component that collects patient information from heterogeneous sources and stores it into a personal health record, from which it can then retrieve data. Our working hypothesis is that the HL7 vMR standard in its release 1 version can properly capture the semantics needed to drive evidence-based clinical decision support systems.
To achieve seamless communication between the personal health record and heterogeneous data consumers, we used a three-pronged approach. First, the choice of the HL7 vMR as a message model for all components accompanied by the use of medical vocabularies eases their semantic interoperability. Second, the DI follows a service-oriented approach to provide access to system components. Third, an XML database provides the data layer.Results The DI supports requirements of a guideline-based clinical decision support system implemented in two clinical domains and settings, ensuring reliable and secure access, high performance, and simplicity of integration, while complying with standards for the storage and processing of patient information needed for decision support and analytics. This was tested within the framework of a multinational project (www.mobiguide-project.eu) aimed at developing a ubiquitous patient guidance system (PGS).
The vMR model with its extension mechanism is demonstrated to be effective for data integration and communication within a distributed PGS implemented for two clinical domains across different healthcare settings in two nations.
我们展示如何使用 HL7 虚拟医疗记录 (vMR) 标准来设计和实现数据集成器 (DI) 组件,该组件从异构源收集患者信息并将其存储到个人健康记录中,然后可以从该记录中检索数据。我们的工作假设是,HL7 vMR 标准在其 1 版本中可以正确捕获驱动基于证据的临床决策支持系统所需的语义。
为了实现个人健康记录和异构数据使用者之间的无缝通信,我们采用了三管齐下的方法。首先,选择 HL7 vMR 作为所有组件的消息模型,并使用医疗词汇,这有助于实现它们的语义互操作性。其次,DI 采用面向服务的方法提供对系统组件的访问。最后,XML 数据库提供数据层。结果 DI 支持在两个临床领域和环境中实现的基于指南的临床决策支持系统的要求,确保可靠和安全的访问、高性能和简单的集成,同时符合决策支持和分析所需的患者信息存储和处理标准。这在一个跨国项目 (www.mobiguide-project.eu) 的框架内进行了测试,该项目旨在开发一种普遍存在的患者指导系统 (PGS)。
vMR 模型及其扩展机制被证明在为两个不同医疗保健环境中的两个临床领域实现的分布式 PGS 内进行数据集成和通信方面是有效的。