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Avatars Alive! The Integration of Physiology Models and Computer Generated Avatars in a Multiplayer Online Simulation

机译:Avatars活着!生理模型与计算机生成的化身在多人在线模拟中的集成

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In a mass casualty incident, injured and at-risk patients will pass through a continuum of care from many different providers acting as a team in a clinical environment. As presented at MMVR 14 [Kaufman, et al 2006], formative evaluations have shown that simulation practice is nearly as good as, and in some cases better than, live exercises for stimulating learners to integrate their procedural knowledge in new circumstances through experiential practice However, to date, multiplayer game technologies have given limited physiological fidelity to their characters, thus limiting the realism and complexity of the scenarios that can be practiced by medical professionals. This paper describes the status of a follow-on program to merge medical and gaming technologies so that computer generated, but human-controlled, avatars used in a simulated, mass casualty training environment will exhibit realistic life signs. This advance introduces a new level of medical fidelity to simulated mass casualty scenarios that can represent thousands of injuries. The program is identifying the critical instructional challenges and related system engineering issues associated with the incorporation of multiple state-of-the-art physiological models into the computer generated synthetic representation of patients. The work is a collaboration between Forterra Systems and the SUMMIT group of Stanford University Medical School, and is sponsored by the US Aimy Medical Command's Telemedicine and Advanced Technologies Research Center (TATRC).
机译:在大规模伤亡事件中,受伤和风险的患者将通过许多不同提供商作为临床环境中的团队的许多不同提供者来传递连续性。如MMVR 14 [Kaufman,et al 2006],形成性评估表明,模拟实践几乎和某些情况一样好,而在某些情况下,用于刺激学习者通过体验实践将其程序知识整合在新的情况下,然而迄今为止,多人游戏技术对其人物具有有限的生理保真度,从而限制了医学专业人员可以练习的场景的现实主义和复杂性。本文介绍了合并医疗和游戏技术的后续程序的状态,以便在模拟的群众伤亡培训环境中产生的计算机生成,但是人类控制,化身将展示现实的生活标志。本前提出了一种新的医学保真程度,可以模拟质量伤亡情景,这些情况可以代表成千上万的伤害。该计划正在识别与将多种最新的生理模型纳入计算机生成的患者的合成表示相关的关键教学挑战和相关系统工程问题。这项工作是普通系统和斯坦福大学医学院峰会组织的合作,由美国Aimy Medical Command的远程医疗和先进技术研究中心(TATRC)赞助。

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