TY - GEN
T1 - Health monitoring systems for massive emergency situations
AU - Smalls, Jordan
AU - Wang, Yue
AU - Li, Xi
AU - Chen, Zehuang
AU - Tang, K. Wendy
PY - 2009
Y1 - 2009
N2 - In this project our goal is to create a health monitoring system that can transmit the vital signs of a patient through an ad-hoc wireless sensor network for a mass causality emergency application. The health monitoring device is to be placed on an injured victim during an emergency and act as a sensor node to connect to a wireless ad-hoc network to transmit the patient's vital sign data. The target market for this system is emergency response institutions such as municipal emergency services, city and state EMS and federal emergency services (e.g., FEMA or the National Guard). Most Wireless health monitoring systems targeted home users and we have not found too many systems designed for emergency responses. Therefore, we expect our system to encounter only a small amount of competitions. The system is to be used as part of the first response to a mass causality incident that might overwhelm the capacity of the first responders. In this situation, the possible loss of communication infrastructure which could force the first responders to use unconventional means of communication. The first responders would need to set up a base of operation to recover and treat the disaster victims. In this base of operation, the medical staff will set up the central server that will receive data from the health monitoring devices. We are hopeful that our system will facilitate the prioritization of delegating medical attention. Our system should also benefit the organization and resource management of a simple triage. Our vision is that such a wireless health monitoring system will make a more efficient emergency response to save more lives.
AB - In this project our goal is to create a health monitoring system that can transmit the vital signs of a patient through an ad-hoc wireless sensor network for a mass causality emergency application. The health monitoring device is to be placed on an injured victim during an emergency and act as a sensor node to connect to a wireless ad-hoc network to transmit the patient's vital sign data. The target market for this system is emergency response institutions such as municipal emergency services, city and state EMS and federal emergency services (e.g., FEMA or the National Guard). Most Wireless health monitoring systems targeted home users and we have not found too many systems designed for emergency responses. Therefore, we expect our system to encounter only a small amount of competitions. The system is to be used as part of the first response to a mass causality incident that might overwhelm the capacity of the first responders. In this situation, the possible loss of communication infrastructure which could force the first responders to use unconventional means of communication. The first responders would need to set up a base of operation to recover and treat the disaster victims. In this base of operation, the medical staff will set up the central server that will receive data from the health monitoring devices. We are hopeful that our system will facilitate the prioritization of delegating medical attention. Our system should also benefit the organization and resource management of a simple triage. Our vision is that such a wireless health monitoring system will make a more efficient emergency response to save more lives.
KW - Emergency wireless
KW - Health monitoring system
UR - https://www.scopus.com/pages/publications/70349280507
U2 - 10.1109/LISAT.2009.5031574
DO - 10.1109/LISAT.2009.5031574
M3 - Conference contribution
AN - SCOPUS:70349280507
SN - 9781424423484
T3 - 2009 IEEE Long Island Systems, Applications and Technology Conference, LISAT 2009
BT - 2009 IEEE Long Island Systems, Applications and Technology Conference, LISAT 2009
T2 - 2009 IEEE Long Island Systems, Applications and Technology Conference, LISAT 2009
Y2 - 1 May 2009 through 1 May 2009
ER -