首页> 外文期刊>American journal of disaster medicine >Real-time geotracking and cataloging of mass casualty incident markers in a search and rescue training simulation: Pilot study
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Real-time geotracking and cataloging of mass casualty incident markers in a search and rescue training simulation: Pilot study

机译:在搜救培训培训模拟中实时地理划分和群众伤亡事件标志的编目:试验研究

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Objective: Search and rescue after mass casualty incidents relies on robust data infrastructure. Federal Emergency Management Agency (FEMA’s) Task Force 1 (TF1) trains its volunteers to locate and virtually tag scene incidents using a global positioning satellite (GPS) device programmed with markers for each incident (Iron Sights). The authors performed a pilot study comparing Iron Sights? to a Wi-Fi-based real-time incident geolocation and virtual tagging dashboard (Panacea?) in creating a dynamic common operating picture. Design: Twenty-nine stations were placed at a predefined scene incident, each featuring a set of varying way point markers using standard FEMAJTF1 nomenclature. Two volunteers performed the experiment for both the Iron Sights and Panacea systems, digitally tagging all station waypoints. Setting: TF1 simulation training field. Main outcome measure(s): Metrics compared included GPS location precision, marker accuracy, and delay between scene sweep and common operational picture (COP) generation. Results: Two hundred and sixty-one waypoints were digitally tagged after excluding three stations for missing data. The average GPS location difference for all waypoints between Iron Sights and Panacea was 3.65 m. Marker tagging accuracy between Iron Sights and Panacea was equivalent and not statistically different (78.8 percent vs 66.2 percent, respectively, p = 0.11). Way points were tagged in 26.59 minutes and 10.55 minutes on average, respectively. Time from scene sweep to virtual COP generation was 7.97 minutes for Iron Sights after complete scene sweep and 37 seconds for Panacea for each waypoint posting in real-time. Conclusions: Panacea generated the COP in real-time compared to a delay with Iron Sights while maintaining the same location precision and marker accuracy. This pilot trial successfully demonstrated the ability to provide real-time actionable intelligence to incident commanders during mass casualty search and rescue missions. Larger field trials are recommended to refine the system and broaden its capabilities.
机译:目的:在大规模伤亡事件依赖于强大的数据基础架构后搜救和救援。联邦应急管理机构(FEMA)的特遣部队1(TF1)列举其志愿者,以使用针对每个事件(铁瞄准器)的全球定位卫星(GPS)设备定位和实际标记场景事件。作者进行了一项比较铁景点的试验研究?在创建动态公共操作图片时,对基于Wi-Fi的实时事件地理位置和虚拟标记仪表板(Panacea?)。设计:将二十九个站放置在预定义的场景事件中,每个站点都有一套使用标准FEMAJTF1命名法的不同方式标记。两位志愿者对铁瞄准符和灵活性系统进行了实验,数字标记了所有车站航点。设置:TF1仿真训练领域。主要结果措施:指标包括GPS定位精度,标记精度和场景扫描与常见操作图片(COP)生成之间的延迟。结果:在排除三站进行缺失数据后,两百六十一点被数字标记。铁瞄准器和灵丹妙药间的所有航点的平均GPS位置差异为3.65米。铁瞄准符和灵芝之间的标记标记精度等同于且统计学不同(分别为78.8%,分别为66.2%,P = 0.11)。点点分别在26.59分钟和10.55分钟内标记。从场景扫描到虚拟警察的时间为17.97分钟,在完整的场景扫描后的铁瞄准器和37秒,为每立方英尺发布的Panacea为37秒。结论:Panacea与铁瞄准器的延迟相比,Panacea实时产生了COP,同时保持相同的位置精度和标记精度。这项试验试验成功地证明了在大规模伤亡搜索和救援任务期间为入射指挥官提供实时可操作智能的能力。建议更大的现场试验来改进系统并扩大其功能。

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