Gabbard Ryan, Fendley Mary, Dar Irfaan A, Warren Rik, Kashou Nasser H
Wright State University, Biomedical, Industrial and Human Factors Engineering, Dayton, Ohio, United States.
Air Force Research Laboratory, Wright-Patterson Air Force Base, Dayton, Ohio, United States.
Neurophotonics. 2017 Oct;4(4):041406. doi: 10.1117/1.NPh.4.4.041406. Epub 2017 Aug 18.
Occupational noise frequently occurs in the work environment in military intelligence, surveillance, and reconnaissance operations. This impacts cognitive performance by acting as a stressor, potentially interfering with the analysts' decision-making process. We investigated the effects of different noise stimuli on analysts' performance and workload in anomaly detection by simulating a noisy work environment. We utilized functional near-infrared spectroscopy (fNIRS) to quantify oxy-hemoglobin (HbO) and deoxy-hemoglobin concentration changes in the prefrontal cortex (PFC), as well as behavioral measures, which include eye tracking, reaction time, and accuracy rate. We hypothesized that noisy environments would have a negative effect on the participant in terms of anomaly detection performance due to the increase in workload, which would be reflected by an increase in PFC activity. We found that HbO for some of the channels analyzed were significantly different across noise types ([Formula: see text]). Our results also indicated that HbO activation for short-intermittent noise stimuli was greater in the PFC compared to long-intermittent noises. These approaches using fNIRS in conjunction with an understanding of the impact on human analysts in anomaly detection could potentially lead to better performance by optimizing work environments.
职业噪声在军事情报、监视和侦察行动的工作环境中经常出现。这作为一种压力源影响认知表现,可能会干扰分析师的决策过程。我们通过模拟嘈杂的工作环境,研究了不同噪声刺激对分析师在异常检测中的表现和工作量的影响。我们利用功能近红外光谱技术(fNIRS)来量化前额叶皮层(PFC)中氧合血红蛋白(HbO)和脱氧血红蛋白浓度的变化,以及行为指标,包括眼动追踪、反应时间和准确率。我们假设,由于工作量增加,嘈杂环境会对参与者的异常检测表现产生负面影响,这将通过PFC活动的增加反映出来。我们发现,在分析的一些通道中,不同噪声类型下的HbO存在显著差异([公式:见正文])。我们的结果还表明,与长间歇噪声相比,短间歇噪声刺激在前额叶皮层中引起的HbO激活更大。这些结合fNIRS并了解其对人类分析师在异常检测中影响的方法,有可能通过优化工作环境来实现更好的表现。