School of Electrical and Computer Engineering, National Technical University of Athens, Heroon Polytechneiou 9, Zographou, Greece.
J Med Syst. 2011 Dec;35(6):1375-92. doi: 10.1007/s10916-009-9415-1. Epub 2010 Jan 27.
Wireless Sensor Network (WSN) can be deployed to monitor the health of patients suffering from critical diseases. Also a wireless network consisting of biomedical sensors can be implanted into the patient's body and can monitor the patients' conditions. These sensor devices, apart from having an enormous capability of collecting data from their physical surroundings, are also resource constraint in nature with a limited processing and communication ability. Therefore we have to integrate them with the Grid technology in order to process and store the collected data by the sensor nodes. In this paper, we proposed the SEnsor Grid Enhancement Data Management system, called SEGEDMA ensuring the integration of different network technologies and the continuous data access to system users. The main contribution of this work is to achieve the interoperability of both technologies through a novel network architecture ensuring also the interoperability of Open Geospatial Consortium (OGC) and HL7 standards. According to the results, SEGEDMA can be applied successfully in a decentralized healthcare environment.
无线传感器网络 (WSN) 可以部署用于监测患有危重疾病的患者的健康状况。由生物医学传感器组成的无线网络也可以植入患者体内,并监测患者的状况。这些传感器设备除了具有从其物理环境中收集数据的巨大能力外,本质上还受到资源限制,具有有限的处理和通信能力。因此,我们必须将它们与网格技术集成,以便处理和存储传感器节点收集的数据。在本文中,我们提出了传感器网格增强数据管理系统,称为 SEGEDMA,以确保不同网络技术的集成和系统用户对连续数据的访问。这项工作的主要贡献是通过一种新颖的网络架构实现了这两种技术的互操作性,同时还确保了开放地理空间联盟 (OGC) 和 HL7 标准的互操作性。根据结果,SEGEDMA 可以成功地应用于分散式医疗保健环境。