De Backere F, Vanhove T, Dejonghe E, Feys M, Herinckx T, Vankelecom J, Decruyenaere J, De Turck F
Femke De Backere, Department of Information Technology Internet Based Communication Networks and Services (IBCN), Ghent University - iMinds, Gaston Crommenlaan 8 (Bus 201), B-9050 Gent, Belgium, E-mail:
Methods Inf Med. 2015;54(1):5-15. doi: 10.3414/ME13-02-0021. Epub 2014 Jun 6.
This article is part of the Focus Theme of METHODS of Information in Medicine on "Managing Interoperability and Complexity in Health Systems".
Handheld computers, such as tablets and smartphones, are becoming more and more accessible in the clinical care setting and in Intensive Care Units (ICUs). By making the most useful and appropriate data available on multiple devices and facilitate the switching between those devices, staff members can efficiently integrate them in their workflow, allowing for faster and more accurate decisions. This paper addresses the design of a platform for the efficient switching between multiple devices in the ICU. The key functionalities of the platform are the integration of the platform into the workflow of the medical staff and providing tailored and dynamic information at the point of care.
The platform is designed based on a 3-tier architecture with a focus on extensibility, scalability and an optimal user experience. After identification to a device using Near Field Communication (NFC), the appropriate medical information will be shown on the selected device. The visualization of the data is adapted to the type of the device. A web-centric approach was used to enable extensibility and portability.
A prototype of the platform was thoroughly evaluated. The scalability, performance and user experience were evaluated. Performance tests show that the response time of the system scales linearly with the amount of data. Measurements with up to 20 devices have shown no performance loss due to the concurrent use of multiple devices.
The platform provides a scalable and responsive solution to enable the efficient switching between multiple devices. Due to the web-centric approach new devices can easily be integrated. The performance and scalability of the platform have been evaluated and it was shown that the response time and scalability of the platform was within an acceptable range.
本文是《医学信息方法》关于“卫生系统中管理互操作性和复杂性”焦点主题的一部分。
诸如平板电脑和智能手机之类的手持计算机在临床护理环境和重症监护病房(ICU)中越来越普及。通过在多个设备上提供最有用和合适的数据,并促进这些设备之间的切换,工作人员可以有效地将它们集成到工作流程中,从而做出更快、更准确的决策。本文探讨了一种用于在ICU中多个设备之间进行高效切换的平台设计。该平台的关键功能是将平台集成到医务人员的工作流程中,并在护理点提供量身定制的动态信息。
该平台基于三层架构进行设计,重点关注可扩展性、可伸缩性和最佳用户体验。通过近场通信(NFC)识别到设备后,相应的医疗信息将显示在所选设备上。数据可视化会根据设备类型进行调整。采用以网络为中心的方法来实现可扩展性和可移植性。
对该平台的原型进行了全面评估。评估了其可扩展性、性能和用户体验。性能测试表明,系统的响应时间与数据量呈线性比例关系。对多达20台设备的测量表明,由于同时使用多个设备,并未导致性能损失。
该平台提供了一种可扩展且响应迅速的解决方案,以实现多个设备之间的高效切换。由于采用了以网络为中心的方法,新设备可以轻松集成。该平台的性能和可扩展性已经得到评估,结果表明平台的响应时间和可扩展性在可接受范围内。