A Wearable System for the Stress Monitoring of Air Traffic Controllers During An Air Traffic Control Refresher Training and the Trier Social Stress Test: A Comparative Study

Q3 Computer Science
S. Rodrigues, J. S. Paiva, D. Dias, Marta Aleixo, R. Filipe, J. P. Cunha
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引用次数: 3

Abstract

Air Traffic Control (ATC) is a complex and demanding process, exposing Air Traffic Controllers (ATCs) to high stress. Recently, efforts have been made in ATC to maintain safety and efficiency in the face of increasing air traffic demands. Computer simulations have been a useful tool for ATC training, improving ATCs skills and consequently traffic safety.This study aims to: a) evaluate psychophysiological indices of stress in an ATC simulation environment using a wearable biomonitoring platform. In order to obtain a measure of ATCs stress levels, results from an experimental study with the same participants, that included a stress-induced task were used as a stress ground truth; b) understand if there are differences in stress levels of ATCs with different job functions (“advisors”vs“operationals”) when performing an ATC Refresher Training, in a simulator environment.Two studies were conducted with ATCs: Study 1, that included a stress-induced task - the Trier Social Stress Test (TSST) and Study 2, that included an ATC simulation task. Linear Heart Rate Variability (HRV) features from ATCs were acquired using a medical-grade wearable Electrocardiogram (ECG) device. Self-reports were used to measure perceived stress.TSST was self-reported as being much more stressful than the simulation task. Physiological data supports these results. Results from study 2 showed more stress among the “advisors” group when comparing to the “operational” group.Results point to the importance of the development of quantified Occupational Health (qOHealth) devices to allow monitoring and differentiation of ATCs stress responses.
一种可穿戴式空中交通管制员压力监测系统在空中交通管制复习训练和Trier社会压力测试中的比较研究
空中交通管制(ATC)是一个复杂而苛刻的过程,使空中交通管制员(ATC)承受着很高的压力。面对日益增长的航空交通需求,空管部门近期致力维持安全及效率。计算机模拟已成为空管人员培训的有用工具,可提高空管人员的技能,从而提高交通安全。本研究旨在:a)利用可穿戴生物监测平台评估ATC模拟环境下应激的心理生理指标。为了获得ATCs压力水平的测量,来自同一参与者的实验研究结果,包括压力诱发的任务,被用作压力基础真理;b)了解不同工作职能(“顾问”与“操作”)的空管人员在模拟器环境中进行空管进修培训时,压力水平是否存在差异。两项研究是用ATC进行的:研究1包括一个压力诱发的任务——特里尔社会压力测试(TSST),研究2包括一个ATC模拟任务。线性心率变异性(HRV)特征从atc获得使用医疗级可穿戴心电图(ECG)设备。自我报告被用来测量感知压力。自述的TSST比模拟任务压力大得多。生理学数据支持这些结果。研究2的结果显示,与“操作”组相比,“顾问”组的压力更大。结果表明,开发量化职业健康(qOHealth)设备对于监测和区分ATCs应激反应具有重要意义。
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
Open Bioinformatics Journal
Open Bioinformatics Journal Computer Science-Computer Science (miscellaneous)
CiteScore
2.40
自引率
0.00%
发文量
4
期刊介绍: The Open Bioinformatics Journal is an Open Access online journal, which publishes research articles, reviews/mini-reviews, letters, clinical trial studies and guest edited single topic issues in all areas of bioinformatics and computational biology. The coverage includes biomedicine, focusing on large data acquisition, analysis and curation, computational and statistical methods for the modeling and analysis of biological data, and descriptions of new algorithms and databases. The Open Bioinformatics Journal, a peer reviewed journal, is an important and reliable source of current information on the developments in the field. The emphasis will be on publishing quality articles rapidly and freely available worldwide.
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