IEEE J Biomed Health Inform. 2024 May;28(5):2769-2780. doi: 10.1109/JBHI.2024.3373332. Epub 2024 May 6.
In code-modulated visual evoked potential (c-VEP) based BCI systems, flickering visual stimuli may result in visual fatigue. Thus, we introduced a discrete-interval binary sequence (DIBS) as visual stimulus modulation, with its power spectrum optimized to emphasize high-frequency components (40 Hz-60 Hz). 8 and 17 subjects participated, respectively, in offline and online experiments on a 4-target asynchronous c-VEP-based BCI system designed to realize a high positive predictive value (PPV), a low false positive rate (FPR) during idle states, and a high true positive rate (TPR) in control states, while minimizing visual fatigue level. Two visual stimuli modulations were introduced and compared: a maximum length sequence (m-sequence) and the high-frequency discrete-interval binary sequence (DIBS). The decoding algorithm was compared among the canonical correlation analysis (CCA), the task-related component analysis (TRCA), and two approaches of sub-band component weight calculation (the traditional method and the proportional method) for FBCCA and FBTRCA. In the online experiments, the average PPV, FPR and TPR achieved, respectively [Formula: see text], [Formula: see text], [Formula: see text] with m-sequence, while [Formula: see text], [Formula: see text] and [Formula: see text] with DIBS. Estimated by objective eye-related metrics and a subjective questionnaire, the visual fatigue in DIBS cases is significantly smaller than that in m-sequence cases. In this study, the feasibility of a novel modulation approach for visual fatigue reduction was proved in an asynchronous c-VEP system, while maintaining comparable performance to existing methods, which provides further insights towards enhancing this field's long-term viability and user-friendliness.
在基于编码调制视觉诱发电位 (c-VEP) 的脑机接口系统中,闪烁的视觉刺激可能导致视觉疲劳。因此,我们引入了离散间隔二进制序列 (DIBS) 作为视觉刺激调制,其功率谱被优化以强调高频成分 (40 Hz-60 Hz)。8 名和 17 名受试者分别参与了离线和在线实验,实验使用了一个基于 4 个目标的异步 c-VEP 的脑机接口系统,旨在实现空闲状态下高正预测值 (PPV)、低假阳性率 (FPR) 和控制状态下高真阳性率 (TPR),同时最小化视觉疲劳水平。引入并比较了两种视觉刺激调制:最大长度序列 (m 序列) 和高频离散间隔二进制序列 (DIBS)。比较了经典相关分析 (CCA)、任务相关成分分析 (TRCA) 以及两种子带成分权重计算方法 (传统方法和比例方法) 在 FBCCA 和 FBTRCA 中的解码算法。在线实验中,m 序列的平均 PPV、FPR 和 TPR 分别为 [Formula: see text]、[Formula: see text] 和 [Formula: see text],而 DIBS 的平均 PPV、FPR 和 TPR 分别为 [Formula: see text]、[Formula: see text] 和 [Formula: see text]。通过客观的眼相关指标和主观问卷进行评估,DIBS 情况下的视觉疲劳明显小于 m 序列情况下的视觉疲劳。在这项研究中,在异步 c-VEP 系统中证明了一种新型调制方法减少视觉疲劳的可行性,同时保持与现有方法相当的性能,这为提高该领域的长期可行性和用户友好性提供了进一步的见解。