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CodeBlue: An ad hoc sensor network infrastructure for emergency medical care
- In International Workshop on Wearable and Implantable Body Sensor Networks
, 2004
"... Sensor devices integrating embedded processors, low-power, lowbandwidth radios, and a modest amount of storage have the potential to enhance emergency medical care. Wearable vital sign sensors can track patient status and location, while simultaneously operating as active tags. We introduce CodeBlue ..."
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Cited by 222 (6 self)
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Blue, a wireless infrastructure intended for deployment in emergency medical care, integrating low-power, wireless vital sign sensors, PDAs, and PC-class systems. CodeBlue will enhance first responders ’ ability to assess patients on scene, ensure seamless transfer of data among caregivers, and facilitate
Vital signs monitoring and patient tracking over a wireless network
- in In Proceedings of the 3rd International Conference on Information Communication Technologies in Health (ICICTH’05
, 2005
"... Abstract — Patients at a disaster scene can greatly benefit from technologies that continuously monitor their vital status and track their locations until they are admitted to the hospital. We have designed and developed a real-time patient monitoring system that integrates vital signs sensors, loca ..."
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Cited by 60 (1 self)
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Abstract — Patients at a disaster scene can greatly benefit from technologies that continuously monitor their vital status and track their locations until they are admitted to the hospital. We have designed and developed a real-time patient monitoring system that integrates vital signs sensors
Reliable Vital Sign Collection in Medical Wireless Sensor Networks
"... Abstract—The aim of this paper is to propose a new approach for the detection and isolation of faulty measurements in medical wireless sensors networks. The proposed approach is based on the combination of statistical model and machine learning algorithm. We begin by collecting physiological data an ..."
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Abstract—The aim of this paper is to propose a new approach for the detection and isolation of faulty measurements in medical wireless sensors networks. The proposed approach is based on the combination of statistical model and machine learning algorithm. We begin by collecting physiological data
The Bits and Flops of the N-hop Multilateration Primitive For Node Localization Problems
, 2002
"... The recent advances in MEMS, embedded systems and wireless communication technologies are making the realization and deployment of networked wireless microsensors a tangible task. Vital to the success of wireless microsensor networks is the ability of microsensors to "collectively perform sensi ..."
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Cited by 280 (2 self)
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The recent advances in MEMS, embedded systems and wireless communication technologies are making the realization and deployment of networked wireless microsensors a tangible task. Vital to the success of wireless microsensor networks is the ability of microsensors to "collectively perform
A Wireless Vital Signs
"... A WIRELESS VITAL SIGNS SYSTEM FOR COMBAT CASUALTIES Combat casualty care can be improved if vital signs can be obtained easily. The work presented in this report describes the status of a compact and portable wireless vital signs (WVS) system that provides vital signs obtained in a traditional manne ..."
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A WIRELESS VITAL SIGNS SYSTEM FOR COMBAT CASUALTIES Combat casualty care can be improved if vital signs can be obtained easily. The work presented in this report describes the status of a compact and portable wireless vital signs (WVS) system that provides vital signs obtained in a traditional
Wireless sensor networks for personal health monitoring: Issues and an implementation
, 2006
"... ... cost, miniature, lightweight, and intelligent physiological sensor nodes. These nodes, capable of sensing, processing, and communicating one or more vital signs, can be seamlessly integrated into wireless personal or body networks (WPANs or WBANs) for health monitor-for reacting to crisis and ma ..."
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Cited by 138 (9 self)
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... cost, miniature, lightweight, and intelligent physiological sensor nodes. These nodes, capable of sensing, processing, and communicating one or more vital signs, can be seamlessly integrated into wireless personal or body networks (WPANs or WBANs) for health monitor-for reacting to crisis
Patient Vital Signs Monitoring using Wireless Body Area Networks
"... Abstract—Today hospitals are equipped with many electronic transmitting devices, which results in electromagnetic interference that may impair wireless transmissions between medical devices. On the other hand, reliable and continuous collection via wireless communications of patient vital signs such ..."
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Cited by 3 (0 self)
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Abstract—Today hospitals are equipped with many electronic transmitting devices, which results in electromagnetic interference that may impair wireless transmissions between medical devices. On the other hand, reliable and continuous collection via wireless communications of patient vital signs
Monitoring Patients ’ Signs Wirelessly
"... Abstract—Recent developments in off-the-shelf wireless embedded computing boards and the increasing need for efficient health monitoring systems, fueled by the increasing number of patients, has prompted R&D professionals to explore better health monitoring systems that are both mobile and cheap ..."
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Cited by 1 (0 self)
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and cheap. This work investigates the feasibility of using the ZigBee embedded technology in health-related monitoring applications. Selected vital signs of patients are acquired using sensor nodes and readings are transmitted wirelessly using devices that utilize the ZigBee communications protocols. A
Vital Signs Monitoring and Management using Mobile Devices
"... Abstract — Constant breakthroughs in medical sensor technology and mobile devices fields, combined with growing wireless communication capabilities, have made possible the emergence of new health monitoring paradigms. The ever-increasing features of PDAs and smartphones make them a vital component i ..."
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Abstract — Constant breakthroughs in medical sensor technology and mobile devices fields, combined with growing wireless communication capabilities, have made possible the emergence of new health monitoring paradigms. The ever-increasing features of PDAs and smartphones make them a vital component
Results 1 - 10
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718