Suppr超能文献

通过神经元信号的生理关联来监测和预测认知状态及表现。

Monitoring and predicting cognitive state and performance via physiological correlates of neuronal signals.

作者信息

Russo Michael B, Stetz Melba C, Thomas Maria L

机构信息

Aircrew Health and Performance Division, US Army Aeromedical Research Laboratory, Ft. Rucker, AL 36362, USA.

出版信息

Aviat Space Environ Med. 2005 Jul;76(7 Suppl):C59-63.

Abstract

Judgment, decision making, and situational awareness are higher-order mental abilities critically important to operational cognitive performance. Higher-order mental abilities rely on intact functioning of multiple brain regions, including the prefrontal, thalamus, and parietal areas. Real-time monitoring of individuals for cognitive performance capacity via an approach based on sampling multiple neurophysiologic signals and integrating those signals with performance prediction models potentially provides a method of supporting warfighters' and commanders' decision making and other operationally relevant mental processes and is consistent with the goals of augmented cognition. Cognitive neurophysiological assessments that directly measure brain function and subsequent cognition include positron emission tomography, functional magnetic resonance imaging, mass spectroscopy, near-infrared spectroscopy, magnetoencephalography, and electroencephalography (EEG); however, most direct measures are not practical to use in operational environments. More practical, albeit indirect measures that are generated by, but removed from the actual neural sources, are movement activity, oculometrics, heart rate, and voice stress signals. The goal of the papers in this section is to describe advances in selected direct and indirect cognitive neurophysiologic monitoring techniques as applied for the ultimate purpose of preventing operational performance failures. These papers present data acquired in a wide variety of environments, including laboratory, simulator, and clinical arenas. The papers discuss cognitive neurophysiologic measures such as digital signal processing wrist-mounted actigraphy; oculometrics including blinks, saccadic eye movements, pupillary movements, the pupil light reflex; and high-frequency EEG. These neurophysiological indices are related to cognitive performance as measured through standard test batteries and simulators with conditions including sleep loss, time on task, and aviation flight-induced fatigue.

摘要

判断、决策和态势感知是对作战认知表现至关重要的高阶心理能力。高阶心理能力依赖于包括前额叶、丘脑和顶叶区域在内的多个脑区的完整功能。通过一种基于对多种神经生理信号进行采样并将这些信号与性能预测模型相结合的方法,对个体的认知表现能力进行实时监测,有可能提供一种支持作战人员和指挥官决策及其他与作战相关心理过程的方法,这与增强认知的目标是一致的。直接测量脑功能及后续认知的认知神经生理学评估包括正电子发射断层扫描、功能磁共振成像、质谱分析、近红外光谱、脑磁图和脑电图(EEG);然而,大多数直接测量方法在作战环境中并不实用。更实用的、虽由实际神经源产生但与之分离的间接测量方法有运动活动、眼动测量、心率和语音压力信号。本节论文的目的是描述选定的直接和间接认知神经生理学监测技术的进展,这些技术应用的最终目的是防止作战表现失败。这些论文展示了在包括实验室、模拟器和临床领域等各种环境中获取的数据。论文讨论了认知神经生理学测量方法,如数字信号处理腕式活动记录仪;眼动测量,包括眨眼、扫视眼动、瞳孔运动、瞳孔光反射;以及高频脑电图。这些神经生理指标与通过标准测试组和模拟器在包括睡眠剥夺、任务时长和航空飞行引起的疲劳等条件下测量的认知表现相关。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验