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基于视觉诱发电位的脑-机接口的刺激设计。

Stimulus Design for Visual Evoked Potential Based Brain-Computer Interfaces.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2023;31:2545-2551. doi: 10.1109/TNSRE.2023.3280081. Epub 2023 Jun 6.

DOI:10.1109/TNSRE.2023.3280081
PMID:37262122
Abstract

Visual stimuli design plays an important role in brain-computer interfaces (BCIs) based on visual evoked potentials (VEPs). Variations in stimulus parameters have been shown to affect both decoding accuracy and subjective perception experience, implying the need for a trade-off in design. In this study, we comprehensively and systematically compared various combinations of amplitude contrast and spectral content parameters in the stimulus design to quantify their impact on decoding performance and subject comfort. Specifically, three parameters were investigated: 1) contrast level, 2) temporal pattern (periodic steady-state or pseudo-random code-modulated), and 3) frequency range. We collected electroencephalogram (EEG) data and subjective perception ratings from ten subjects and evaluated the decoding accuracy and subject comfort rating for different combinations of the stimulus parameters. Our results indicate that while high-frequency steady-state VEP (SSVEP) stimuli were rated the most comfortable, they also had the lowest decoding accuracy. Conversely, low-frequency SSVEP stimuli were rated the least comfortable but had the highest decoding accuracy. Standard and high-frequency M-sequence code-modulated VEPs (c-VEPs) produced intermediates between the two. We observed a consistent trade-off relationship between decoding accuracy and subjective comfort level across all parameters. Based on our findings, we offer c-VEP as a preferable stimulus for achieving reliable decoding accuracy while maintaining a reasonable level of comfortability.

摘要

视觉刺激设计在基于视觉诱发电位(VEPs)的脑机接口(BCIs)中起着重要作用。刺激参数的变化已被证明会影响解码精度和主观感知体验,这意味着在设计中需要进行权衡。在这项研究中,我们全面系统地比较了刺激设计中幅度对比度和光谱内容参数的各种组合,以量化它们对解码性能和主体舒适度的影响。具体来说,研究了三个参数:1)对比度水平,2)时变模式(周期性稳态或伪随机码调制),3)频率范围。我们从十位受试者那里收集了脑电图(EEG)数据和主观感知评分,并评估了不同刺激参数组合的解码精度和主体舒适度评分。我们的结果表明,虽然高频稳态视觉诱发电位(SSVEP)刺激被评为最舒适,但它们的解码精度也最低。相反,低频 SSVEP 刺激被评为最不舒服,但解码精度最高。标准和高频 M 序列码调制视觉诱发电位(c-VEPs)在两者之间产生了中间值。我们观察到所有参数之间的解码精度和主观舒适度水平之间都存在一致的权衡关系。基于我们的发现,我们提出了 c-VEP 作为一种更可取的刺激,以在保持合理舒适度水平的同时实现可靠的解码精度。

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