An Interdisciplinary Approach to Designing a Mass Casualty Incident Management System
Author(s) -
Javier Mulero Chaves,
Anton Donner,
Chen Tang,
Christine Adler,
Marion Krüsmann,
Àngels Via Estrem,
Thomas Greiner-Mai
Publication year - 2011
Publication title -
open access lmu (ludwid maxmilian's universitat munchen)
Language(s) - English
Resource type - Conference proceedings
DOI - 10.5282/ubm/epub.17565
Subject(s) - mass casualty incident , triage , computer science , robustness (evolution) , emergency management , key (lock) , incident management , process management , risk analysis (engineering) , engineering management , computer security , engineering , human factors and ergonomics , poison control , medical emergency , medicine , gene , political science , biochemistry , law , chemistry
Efficient emergency management requires on the one hand collecting distributed pieces of information in order to get an aggregated situation overview, and on the other hand distributing and presenting the gathered information to all levels of decision making. IT-supported emergency management systems can support these tasks, but need to be carefully designed in order to reflect the actual needs. Robustness and user-friendliness are obvious key requirements for this area of application, but a thorough understanding of operational procedures is mandatory, too. This paper gives a brief description of the steps taken for the e-Triage research project, in which an IT-supported management system for mass casualty incidents (MCIs) is under development. A specific characteristic of the approach is that not only users as customers and engineers as vendors are involved, but also psychologists focussing on acceptance and ergonomics in terms of stress load caused by the developed solutions.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom