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Power spectra constrained IVA for enhanced detection of SSVEP content

机译:功率谱约束IVA以增强对SSVEP含量的检测

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The detection of steady state visual evoked potentials (SSVEPs) has been identified as an effective solution for brain computer interface (BCI) systems as well as for neurocognitive investigations of visually related tasks. SSVEPs are induced at the same frequency as the visual stimuli and can be observed in the scalp-based recordings of electroencephalogram signals, though they are one component buried amongst the normal brain signals and complex noise. Variations in individual response latencies as well as the presence of multiple biological artifacts complicate the use of direct frequency analysis, thus making blind source separation methods, such as independent component (ICA) and independent vector analysis (IVA) desirable solutions. IVA is a recent extension of ICA that decomposes multiple datasets simultaneously and has been been shown to be capable of enhancing and improving the detection of SSVEPs by exploiting the complimentary information that exists across EEG channels. In this work, we present a novel extension of IVA which incorporates a priori information to constrain the power spectral density (PSD) of the source estimates, known as constrained PSD IVA (CP-IVA) and demonstrate its improved SSVEP detection performance as well as stability over standard IVA and temporally constrained IVA (C-IVA).
机译:稳态视觉诱发电位(SSVEP)的检测已被确定为脑计算机接口(BCI)系统以及视觉相关任务的神经认知研究的有效解决方案。 SSVEP以与视觉刺激相同的频率被诱发,并且可以在基于头皮的脑电图信号记录中观察到,尽管它们是埋在正常大脑信号和复杂噪声中的一个成分。个体响应潜伏期的变化以及多个生物假象的存在使直接频率分析的使用复杂化,因此使盲源分离方法(如独立成分(ICA)和独立矢量分析(IVA))成为理想的解决方案。 IVA是ICA的最新扩展,它可以同时分解多个数据集,并且已被证明能够利用EEG通道之间存在的互补信息来增强和改进SSVEP的检测。在这项工作中,我们提出了IVA的新扩展,它结合了先验信息以约束源估计的功率谱密度(PSD),称为约束PSD IVA(CP-IVA),并展示了其改进的SSVEP检测性能以及超过标准IVA和时间受限IVA(C-IVA)的稳定性。

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