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Effects of a Biocybernetic System on Vigilance Performance

机译:生物神经系统对警惕性的影响

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The present study was designed to determine whether a biocybernetic, adaptive system could enhance vigilance performance. Participants were asked to monitor the repetitive presentation of white bars on a computer screen for occasional increases in length. An index of task engagement was derived from participants' electroencephalographic (EEG) activity and was used to change the presentation rate of events among 3 values (6, 20, and 60 events/min). Under a negative feedback contingency, event rates increased if the engagement index decreased and, conversely, decreased if the index increased. Under positive feedback, the opposite contingency existed. Each experimental participant had a yoked control partner who received the same pattern of changes in event rates irrespective of his or her EEG activity. The results showed that better vigilance performance was obtained under negative feedback and that the performance of the yoked participants was similar to that of their experimental partners. These findings suggest that it may be possible to improve monitoring performance on critical activities such as air traffic control and radar and sonar operation through a pattern of event rate changes that do not rely on an operator's overt behavior.
机译:本研究旨在确定生物神经适应性系统是否可以增强警惕性。要求参与者监视计算机屏幕上白条的重复显示,以防偶尔出现长度增加。任务参与度的索引来自参与者的脑电图(EEG)活动,并用于在3个值(6、20和60个事件/分钟)之间更改事件的呈现率。在负反馈偶然性下,如果参与度指数降低,则事件发生率增加;相反,如果参与度指数升高,则事件发生率降低。在积极的反馈下,存在相反的偶然性。每个实验参与者都有一个带轭的对照伴侣,无论他或她的脑电图活动如何,其事件发生率的变化都相同。结果表明,在负反馈下可以获得更好的警惕性表现,轭铁参与者的表现与实验伙伴的表现相似。这些发现表明,通过不依赖操作员公开行为的事件速率变化模式,可以改善对关键活动(如空中交通管制,雷达和声纳运行)的监视性能。

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