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Continuous monitoring of brain dynamics with functional near infrared spectroscopy as a tool for neuroergonomic research: empirical examples and a technological development

机译:功能近红外光谱法连续监测大脑动力学作为神经人体工程学研究的工具:经验示例和技术发展

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摘要

Functional near infrared spectroscopy (fNIRS) is a non-invasive, safe, and portable optical neuroimaging method that can be used to assess brain dynamics during skill acquisition and performance of complex work and everyday tasks. In this paper we describe neuroergonomic studies that illustrate the use of fNIRS in the examination of training-related brain dynamics and human performance assessment. We describe results of studies investigating cognitive workload in air traffic controllers, acquisition of dual verbal-spatial working memory skill, and development of expertise in piloting unmanned vehicles. These studies used conventional fNIRS devices in which the participants were tethered to the device while seated at a workstation. Consistent with the aims of mobile brain imaging (MoBI), we also describe a compact and battery-operated wireless fNIRS system that performs with similar accuracy as other established fNIRS devices. Our results indicate that both wired and wireless fNIRS systems allow for the examination of brain function in naturalistic settings, and thus are suitable for reliable human performance monitoring and training assessment.
机译:功能性近红外光谱(fNIRS)是一种非侵入性,安全且便携式的光学神经成像方法,可用于评估技能获得以及复杂工作和日常任务执行过程中的大脑动力学。在本文中,我们描述了神经人体工程学研究,这些研究说明了fNIRS在与训练有关的大脑动力学和人类绩效评估的检查中的使用。我们描述了以下研究的结果:调查空中交通管制员的认知工作量,获得双语言空间工作记忆技能以及在驾驶无人驾驶飞机方面的专业知识的发展。这些研究使用传统的fNIRS设备,其中参与者坐在工作站上时被拴在设备上。与移动大脑成像(MoBI)的目标一致,我们还描述了一种紧凑且由电池供电的无线fNIRS系统,其性能与其他已建立的fNIRS设备相似。我们的结果表明,有线和无线fNIRS系统都允许在自然环境下检查大脑功能,因此适合进行可靠的人类绩效监测和培训评估。

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