Assessing the Mental Model State of Emergency Responders in the Context of Radiological Dispersal Device (RDD) Incidents: A Multi-state Study.

IF 1 4区 医学 Q4 ENVIRONMENTAL SCIENCES
Angela E Leek, Nir Keren, Mack C Shelley, Warren Franke, Gretchen A Mosher, Stephen A Simpson, Timothy Rice, H Emily Hayden
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引用次数: 0

Abstract

Abstract: Hazardous Materials (HAZMAT) Technicians' notions of mental model, or cognitive representations of their understanding and beliefs regarding Radiological Dispersal Devices (RDDs) incidents, have not been previously explored. A prior study developed an Expected Mental Model State (EMMS) framework specific to RDD incident response for HAZMAT technicians. The work herein presents the development of a derivative of this framework, the EMMS Diagnostic Matrix, to evaluate the actual Mental Model State (MMS) of HAZMAT technicians in the context of RDD incidents. The EMMS Diagnostic Matrix was administered via a survey and simulation activity in four U.S. states representing the Northeast, West, South, and Midwest regions. Data were collected and coded using grounded theory methodology. Reflexive thematic analysis was employed to identify themes across related areas where the notions of mental model for the HAZMAT technician responders' actual MMS differed from the EMMS. The analysis of the collected data revealed four significant themes representing incomplete notions of the mental model spanning various EMMS conceptual domains: Overestimation of Radiation Dose and Health Effects, indicating misunderstandings about the health impacts of radiation exposure, Acute Radiation Syndrome (ARS), particularly in the lower range of radiation doses; Overreliance on Responder Protection [personal protective equipment (PPE)/self-contained breathing apparatus (SCBA)], highlighting gaps in understanding radiation principles and radioactive material dispersal properties from a radiological dispersal device; Misunderstanding Radiation Detection and Units, signifying confusion about radiation units and differentiation between dose rate and accumulated dose; and Incomplete Understanding of Radiation Characteristics and Dispersal Properties, outlining a limited grasp of inhalation risks from radiation and the dispersal traits of a radiological dispersal device. The interconnectedness of these technical misunderstandings can guide the development of a strategic plan to evaluate and modify existing training, aiming at these specific themes to improve the efficiency of HAZMAT technicians in emergency situations and to identify areas for further research.

评估辐射散布装置 (RDD) 事件背景下应急响应人员的心理模式状态:多州研究。
摘要:危险材料(HAZMAT)技术人员的心智模式概念,即他们对放射性物质扩散装置(RDDs)事件的理解和信念的认知表征,此前尚未进行过探讨。之前的一项研究为危险品运输 (HAZMAT) 技术人员开发了一个专门针对 RDD 事件响应的预期心智模式状态 (EMMS) 框架。本文介绍了该框架的衍生工具--"EMMS 诊断矩阵 "的开发情况,以评估危险品、有害物质和弹药技术人员在 RDD 事件中的实际心理模型状态 (MMS)。EMMS 诊断矩阵通过调查和模拟活动在美国东北部、西部、南部和中西部地区的四个州实施。采用基础理论方法收集数据并进行编码。采用了反思性主题分析法来确定相关领域的主题,在这些领域中,危险品运输技术人员的实际 MMS 心智模式概念与 EMMS 存在差异。通过对收集到的数据进行分析,发现了四个重要的主题,它们代表了心智模式的不完整概念,跨越了环境监测管理系统的各个概念领域:高估辐射剂量和对健康的影响,表明对辐射照射、急性辐射综合症(ARS)对健康的影响存在误解,尤其是在较低的辐射剂量范围内;过度依赖响应者防护[个人防护设备(PPE)/自给式呼吸器(SCBA)],突出表明在理解辐射原理和放射性物质从放射性物质散布装置中散布的特性方面存在差距;对辐射检测和单位的误解,表明对辐射单位以及剂量率和累积剂量之间区别的混淆;以及对辐射特征和散布特性的不完全理解,概述了对辐射吸入风险和放射性散布装置散布特性的有限掌握。这些技术误解之间的相互联系可以指导制定一项战略计划,以评估和修改现有培训,针对这些特定主题提高危险品、有害物质和弹药技术人员在紧急情况下的效率,并确定进一步研究的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Health physics
Health physics 医学-公共卫生、环境卫生与职业卫生
CiteScore
4.20
自引率
0.00%
发文量
324
审稿时长
3-8 weeks
期刊介绍: Health Physics, first published in 1958, provides the latest research to a wide variety of radiation safety professionals including health physicists, nuclear chemists, medical physicists, and radiation safety officers with interests in nuclear and radiation science. The Journal allows professionals in these and other disciplines in science and engineering to stay on the cutting edge of scientific and technological advances in the field of radiation safety. The Journal publishes original papers, technical notes, articles on advances in practical applications, editorials, and correspondence. Journal articles report on the latest findings in theoretical, practical, and applied disciplines of epidemiology and radiation effects, radiation biology and radiation science, radiation ecology, and related fields.
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