Bimodal EEG-fNIRS in Neuroergonomics. Current Evidence and Prospects for Future Research

Nicolas J. Bourguignon, S. Bue, C. Guerrero-Mosquera, Guillermo Borragán
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引用次数: 1

Abstract

Neuroergonomics focuses on the brain signatures and associated mental states underlying behavior to design human-machine interfaces enhancing performance in the cognitive and physical domains. Brain imaging techniques such as functional near-infrared spectroscopy (fNIRS) and electroencephalography (EEG) have been considered key methods for achieving this goal. Recent research stresses the value of combining EEG and fNIRS in improving these interface systems' mental state decoding abilities, but little is known about whether these improvements generalize over different paradigms and methodologies, nor about the potentialities for using these systems in the real world. We review 33 studies comparing mental state decoding accuracy between bimodal EEG-fNIRS and unimodal EEG and fNIRS in several subdomains of neuroergonomics. In light of these studies, we also consider the challenges of exploiting wearable versions of these systems in real-world contexts. Overall the studies reviewed suggest that bimodal EEG-fNIRS outperforms unimodal EEG or fNIRS despite major differences in their conceptual and methodological aspects. Much work however remains to be done to reach practical applications of bimodal EEG-fNIRS in naturalistic conditions. We consider these points to identify aspects of bimodal EEG-fNIRS research in which progress is expected or desired.
神经工效学中的双峰EEG-fNIRS。目前的证据和未来研究的展望
神经工效学关注的是大脑特征和相关心理状态的潜在行为,以设计人机界面,提高认知和物理领域的性能。脑成像技术,如功能性近红外光谱(fNIRS)和脑电图(EEG)被认为是实现这一目标的关键方法。最近的研究强调结合EEG和fNIRS在提高这些接口系统的精神状态解码能力方面的价值,但对于这些改进是否可以推广到不同的范式和方法,以及在现实世界中使用这些系统的潜力,人们知之甚少。我们回顾了33项研究,比较了在神经工效学的几个子领域中,双峰EEG-fNIRS和单峰EEG-fNIRS的精神状态解码准确性。根据这些研究,我们还考虑了在现实环境中利用这些系统的可穿戴版本的挑战。总的来说,回顾的研究表明,尽管在概念和方法方面存在重大差异,但双峰EEG-fNIRS优于单峰EEG或fNIRS。然而,要在自然条件下实现双峰EEG-fNIRS的实际应用,还有很多工作要做。我们考虑这些点来确定双峰脑电图-近红外光谱研究中预期或希望取得进展的方面。
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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