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空中交通管制中的任务难度与心理负荷的生理测量:一项范围综述

Task difficulty and physiological measures of mental workload in air traffic control: a scoping review.

作者信息

Pagnotta Murillo, Jacobs David M, de Frutos Patricia L, Rodríguez Ruben, Ibáñez-Gijón Jorge, Travieso David

机构信息

Facultad de Psicología, Universidad Autónoma de Madrid, Madrid, Spain.

CRIDA A.I.E, ATM R&D + Innovation Reference Centre, Madrid, Spain.

出版信息

Ergonomics. 2022 Aug;65(8):1095-1118. doi: 10.1080/00140139.2021.2016998. Epub 2021 Dec 22.

Abstract

This study provides a systematic synthesis of empirical research on mental workload (MWL) in air traffic control (ATC). MWL is a key concept in research on innovative technologies, because the assessment of MWL is crucial to the evaluation of such technologies. Our specific focus was on physiological measures of MWL. The used search strategy identified 39 peer-reviewed publications that analysed ATC tasks, examined different levels of difficulty of the ATC task, and considered at least one physiological measure of MWL. Positive relations between measures of MWL and task difficulty were observed most frequently, indicating that the measures indeed allowed the assessment of MWL. The most commonly used physiological measures were brain measures (EEG and fNIR) and heart rate measures. The review revealed a need for more precise descriptions of crucial experimental parameters in order to permit a transition of the field towards more interactive and dynamic types of analysis. Research on innovative technology in air traffic control (ATC) depends on assessments of mental workload (MWL). We reviewed empirical research on MWL in ATC. Brain and heart measures often allow assessments of MWL. Better descriptions of experiments are needed to allow comparisons among studies and more dynamic and interactive analyses.

摘要

本研究对空中交通管制(ATC)中脑力负荷(MWL)的实证研究进行了系统综述。脑力负荷是创新技术研究中的一个关键概念,因为对脑力负荷的评估对于此类技术的评估至关重要。我们特别关注脑力负荷的生理测量方法。所采用的搜索策略确定了39篇经过同行评审的出版物,这些出版物分析了空中交通管制任务,研究了不同难度水平的空中交通管制任务,并至少考虑了一种脑力负荷的生理测量方法。脑力负荷测量与任务难度之间的正相关关系最为常见,这表明这些测量方法确实能够对脑力负荷进行评估。最常用的生理测量方法是脑部测量(脑电图和近红外光谱)和心率测量。综述表明,需要对关键实验参数进行更精确的描述,以便该领域能够向更具交互性和动态性的分析类型转变。空中交通管制(ATC)中的创新技术研究依赖于对脑力负荷(MWL)的评估。我们回顾了空中交通管制中脑力负荷的实证研究。脑部和心脏测量通常能够对脑力负荷进行评估。需要对实验进行更好的描述,以便能够在不同研究之间进行比较,并开展更具动态性和交互性的分析。

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