利用物联网和室内导航增强临床工程和循证维护能力

IF 2.8 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS Future Internet Pub Date : 2024-07-25 DOI:10.3390/fi16080263
A. Luschi, Giovanni Luca Daino, Gianpaolo Ghisalberti, Vincenzo Mezzatesta, E. Iadanza
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引用次数: 0

摘要

OHIO(Odin Hospital Indoor cOmpass)项目通过ODIN-Open Call获得了欧盟 "地平线2020 "研究与创新行动项目的资助,该项目在ODIN项目下发布和执行,重点是通过引入物联网(IoT)、机器人技术和人工智能(AI)等数字化解决方案,提高医院的安全性、生产率和质量。OHIO 的目标是通过利用内部信息资源,提高试点医院--意大利锡耶纳 "Le Scotte "医院医疗设备维护活动的生产率和质量。OHIO 还将与 ODIN 平台完全集成,充分利用现有的服务和功能。OHIO 利用蓝牙低能耗 (BLE) 标签和天线以及 ODIN 平台提供的资源,开发了一个复杂的基于本体的物联网框架,通过一个中央管理网络应用程序和一个用于移动设备的室内实时定位系统 (RTLS) 充当医疗设备维护的中央驾驶舱。应用可编程接口(API)基于 REST 架构,可与医院现有的计算机辅助设施管理(CAFM)和计算机化维护管理系统(CMMS)软件进行无缝数据交换和集成。通过评估从文献中提取的关键绩效指标(KPI),并对整个系统和所开发应用程序的图形用户界面(GUI)进行初步可用性测试,采用定量和定性方法对项目成果进行评估。测试结果表明,维护时间得到了改善,包括减少了维护操作延迟、维护任务持续时间和设备停机时间。可用性测试后的调查问卷显示了对应用程序可用性和有效性的积极反馈。通过将现有软件与新设计的增强型界面相结合,OHIO 框架提高了医疗设备维护的有效性。研究还表明,有可能将开发的方法和应用程序推广到 ODIN 网络内的其他大型试点医院。
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Empowering Clinical Engineering and Evidence-Based Maintenance with IoT and Indoor Navigation
The OHIO (Odin Hospital Indoor cOmpass) project received funding from the European Union’s Horizon 2020 research and innovation action program, via ODIN–Open Call, which is issued and executed under the ODIN project and focuses on enhancing hospital safety, productivity, and quality by introducing digital solutions, such as the Internet of Things (IoT), robotics, and artificial intelligence (AI). OHIO aims to enhance the productivity and quality of medical equipment maintenance activities within the pilot hospital, “Le Scotte” in Siena (Italy), by leveraging internal informational resources. OHIO will also be completely integrated with the ODIN platform, taking advantage of the available services and functionalities. OHIO exploits Bluetooth Low Energy (BLE) tags and antennas together with the resources provided by the ODIN platform to develop a complex ontology-based IoT framework, which acts as a central cockpit for the maintenance of medical equipment through a central management web application and an indoor real-time location system (RTLS) for mobile devices. The application programmable interfaces (APIs) are based on REST architecture for seamless data exchange and integration with the hospital’s existing computer-aided facility management (CAFM) and computerized maintenance management system (CMMS) software. The outcomes of the project are assessed both with quantitative and qualitative methods, by evaluating key performance indicators (KPIs) extracted from the literature and performing a preliminary usability test on both the whole system and the graphic user interfaces (GUIs) of the developed applications. The test implementation demonstrates improvements in maintenance timings, including a reduction in maintenance operation delays, duration of maintenance tasks, and equipment downtime. Usability post-test questionnaires show positive feedback regarding the usability and effectiveness of the applications. The OHIO framework enhanced the effectiveness of medical equipment maintenance by integrating existing software with newly designed, enhanced interfaces. The research also indicates possibilities for scaling up the developed methods and applications to additional large-scale pilot hospitals within the ODIN network.
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来源期刊
Future Internet
Future Internet Computer Science-Computer Networks and Communications
CiteScore
7.10
自引率
5.90%
发文量
303
审稿时长
11 weeks
期刊介绍: Future Internet is a scholarly open access journal which provides an advanced forum for science and research concerned with evolution of Internet technologies and related smart systems for “Net-Living” development. The general reference subject is therefore the evolution towards the future internet ecosystem, which is feeding a continuous, intensive, artificial transformation of the lived environment, for a widespread and significant improvement of well-being in all spheres of human life (private, public, professional). Included topics are: • advanced communications network infrastructures • evolution of internet basic services • internet of things • netted peripheral sensors • industrial internet • centralized and distributed data centers • embedded computing • cloud computing • software defined network functions and network virtualization • cloud-let and fog-computing • big data, open data and analytical tools • cyber-physical systems • network and distributed operating systems • web services • semantic structures and related software tools • artificial and augmented intelligence • augmented reality • system interoperability and flexible service composition • smart mission-critical system architectures • smart terminals and applications • pro-sumer tools for application design and development • cyber security compliance • privacy compliance • reliability compliance • dependability compliance • accountability compliance • trust compliance • technical quality of basic services.
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