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Multimodal Evaluation of Mental Workload Using a Hybrid EEG-fNIRS Brain-Computer Interface System

机译:使用混合EEG-FNIR脑电脑界面系统的心理工作量多式化评估

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Despite great advances in state-of-the-art brain-computer interfaces (BCIs), most BCIs do not consider users' cognitive status during operation, which might have a critical role in BCI performance. This study proposes a novel multimodal BCI to concurrently measure electrical and hemodynamic activities using electroencephalography (EEG) and functional near-infrared spectroscopy (fNIRS), and to quantify the neural correlates of mental arithmetic-induced workload at multiscale levels in two groups of old and young. We propose an oddball-based Math paradigm where the subjects performed a set of mental arithmetic operations at the target intensifications. Our analysis demonstrated an increase of EEG-delta and theta, a decrease of alpha, and an increase of fNIRS-oxyhemoglobin (HbO) level associated with mental workload, which were significantly observed in the elder group. The changes of EEG-delta, theta, and HbO were primarily found in the frontal and prefrontal areas while alpha was mainly seen in the parietal locations. The preliminary analyses suggest a set of functional brain processing, at multiscale levels, required by mental workload conditions that is more profound in the elder group.
机译:尽管最先进的脑电脑接口(BCIS),但大多数BCI都不考虑用户在操作期间的认知状态,这可能在BCI性能中具有关键作用。本研究提出了一种新型多媒体BCI,以使用脑电图(EEG)和功能近红外光谱(FNIR)同时测量电气和血液动力学活动,并量化精神算术诱导的工作量的神经相关性在两组旧的和年轻。我们提出了一种基于奇怪的数学条例,其中受试者在目标强度执行一组心理算术运算。我们的分析表明EEG-DELTA和THETA的增加,α的降低,以及与心理工作量相关的FNIRS-氧血红蛋白(HBO)水平,在长期组中显着观察到。 EEG-DELTA,THETA和HBO的变化主要是在额叶和前额落区域中发现,而alpha主要在Pareicaltal位置看到。初步分析表明了一组功能性脑加工,在多尺度水平,在长期集团中更深刻的心理工作量条件要求。

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