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脑-机接口中同时使用 EEG 和 NIRS 数据增强脑开关性能。

Enhanced Performance of a Brain Switch by Simultaneous Use of EEG and NIRS Data for Asynchronous Brain-Computer Interface.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2020 Oct;28(10):2102-2112. doi: 10.1109/TNSRE.2020.3017167. Epub 2020 Aug 17.

Abstract

Previous studies have shown the superior performance of hybrid electroencephalography (EEG)/ near-infrared spectroscopy (NIRS) brain-computer interfaces (BCIs). However, it has been veiled whether the use of a hybrid EEG/NIRS modality can provide better performance for a brain switch that can detect the onset of the intention to turn on a BCI. In this study, we developed such a hybrid EEG/NIRS brain switch and compared its performance with single modality EEG- and NIRS-based brain switch respectively, in terms of true positive rate (TPR), false positive rate (FPR), onset detection time (ODT), and information transfer rate (ITR). In an offline analysis, the performance of a hybrid EEG/NIRS brain switch was significantly improved over that of EEG- and NIRS-based brain switches in general, and in particular a significantly lower FPR was observed for the hybrid EEG/NIRS brain switch. A pseudo-online analysis was additionally performed to confirm the feasibility of implementing an online BCI system with our hybrid EEG/NIRS brain switch. The overall trend of pseudo-online analysis results generally coincided with that of the offline analysis results. No significant difference in all performance measures was also found between offline and pseudo online analysis schemes when the amount of training data was same, with one exception for the ITRs of an EEG brain switch. These offline and pseudo-online results demonstrate that a hybrid EEG/NIRS brain switch can be used to provide a better onset detection performance than that of a single neuroimaging modality.

摘要

先前的研究表明,混合脑电(EEG)/近红外光谱(NIRS)脑机接口(BCI)的性能更优。然而,使用混合 EEG/NIRS 模式是否能为检测到开启 BCI 意图的脑开关提供更好的性能,目前还不清楚。在这项研究中,我们开发了这样一种混合 EEG/NIRS 脑开关,并分别将其性能与单模态 EEG 和 NIRS 脑开关进行了比较,比较指标包括真阳性率(TPR)、假阳性率(FPR)、起始检测时间(ODT)和信息传输率(ITR)。在离线分析中,混合 EEG/NIRS 脑开关的性能总体上优于 EEG 和 NIRS 脑开关,特别是混合 EEG/NIRS 脑开关的假阳性率显著降低。此外,还进行了伪在线分析,以确认使用我们的混合 EEG/NIRS 脑开关实现在线 BCI 系统的可行性。伪在线分析结果的总体趋势与离线分析结果基本一致。当训练数据量相同时,离线和伪在线分析方案在所有性能指标上均无显著差异,但 EEG 脑开关的 ITR 除外。这些离线和伪在线结果表明,混合 EEG/NIRS 脑开关可用于提供比单一神经影像学模式更好的起始检测性能。

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