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首页> 外文期刊>International Journal of Occupational Safety and Ergonomics >Adaptation of the standardized plant analysis-risk human reliability analysis technique for the surgical setting: expert judgment approach
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Adaptation of the standardized plant analysis-risk human reliability analysis technique for the surgical setting: expert judgment approach

机译:标准化植物分析-风险人体可靠性分析技术在手术环境中的适应:专家判断方法

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Objectives. Application of human reliability analysis (HRA) techniques originally developed for industrial settings to the healthcare sector may be controversial in terms of reliability and methodological level. The aim of the present study was to adapt a standardized plant analysis risk-human reliability analysis (SPAR-H) technique for application in surgical settings through suggesting more context-specific definitions for performance shaping factors (PSFs), designing precise levels and elicitation of multipliers through a domain expert judgment approach. Methods. A ratio magnitude estimation approach was used for carrying out domain expert judgment for multiplier elicitation. Experts from four teaching hospitals participated in the present study. Intra-class correlation was used in order to examine the inter-rater reliability of the estimated multipliers for each level of diagnosis and action task type. Results. Available time, threat stress, task complexity, experience/training, procedures, working conditions, human-machine interface, fatigue and teamwork were the nine suggested PSFs for the adapted SPAR-H technique. Conclusion. Context-specific definitions of the PSFs can enhance the reliability of human error probability assessments. Eventually, it could be concluded that multiplier elicitation through domain expert judgment is an efficient approach for adaptation of the HRA techniques for application in specific contexts.
机译:目标。最初为工业环境开发的人体可靠性分析(HRA)技术在医疗保健领域的应用在可靠性和方法水平方面可能存在争议。本研究的目的是通过为性能塑造因子 (PSF) 提出更多特定于上下文的定义、设计精确的水平和通过领域专家判断方法引出乘数,将标准化的工厂分析风险-人类可靠性分析 (SPAR-H) 技术应用于手术环境。方法。采用比率幅度估计方法进行乘子引出的域专家判断。来自四所教学医院的专家参与了本研究。使用类内相关性来检查每个诊断和行动任务类型的估计乘数的评估者间可靠性。结果。可用时间、威胁压力、任务复杂性、经验/培训、程序、工作条件、人机界面、疲劳和团队合作是适应后的 SPAR-H 技术的九个建议 PSF。结论。PSF 的特定上下文定义可以提高人为错误概率评估的可靠性。最终,可以得出结论,通过领域专家判断进行乘数引出是使HRA技术适应特定环境应用的有效方法。

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