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通过双相刺激来消除基于 SSVEP 的脑机接口中的相位漂移。

Accounting for phase drifts in SSVEP-based BCIs by means of biphasic stimulation.

机构信息

Institute of Brain Science, National Yang-Ming University, Taipei 112, Taiwan.

出版信息

IEEE Trans Biomed Eng. 2011 May;58(5):1394-402. doi: 10.1109/TBME.2010.2102757. Epub 2010 Dec 30.

Abstract

This study proposes a novel biphasic stimulation technique to solve the issue of phase drifts in steady-state visual evoked potential (SSVEPs) in phase-tagged systems. Phase calibration was embedded in stimulus sequences using a biphasic flicker, which is driven by a sequence with alternating reference and phase-shift states. Nine subjects were recruited to participate in off-line and online tests. Signals were bandpass filtered and segmented by trigger signals into reference and phase-shift epochs. Frequency components of SSVEP in the reference and phase-shift epochs were extracted using the Fourier method with a 50% overlapped sliding window. The real and imaginary parts of the SSVEP frequency components were organized into complex vectors in each epoch. Hotelling's t-square test was used to determine the significances of nonzero mean vectors. The rejection of noisy data segments and the validation of gaze detections were made based on p values. The phase difference between the valid mean vectors of reference and phase-shift epochs was used to identify user's gazed targets in this system. Data showed an average information transfer rate of 44.55 and 38.21 bits/min in off-line and online tests, respectively.

摘要

本研究提出了一种新颖的双相刺激技术,以解决相位标记系统中稳态视觉诱发电位(SSVEP)的相位漂移问题。通过使用双相闪烁,在刺激序列中嵌入相位校准,双相闪烁由具有交替参考和相移状态的序列驱动。招募了九名受试者参加离线和在线测试。通过触发信号将信号进行带通滤波和分段,分为参考和相移时段。使用具有 50%重叠滑动窗口的傅里叶方法提取参考和相移时段中的 SSVEP 频率分量。在每个时段中,将 SSVEP 频率分量的实部和虚部组织成复数向量。使用 Hotelling 的 t 平方检验来确定非零均值向量的显著性。基于 p 值拒绝噪声数据段并验证注视检测。在该系统中,使用参考和相移时段中有效均值向量之间的相位差来识别用户的注视目标。数据显示离线测试和在线测试的平均信息传输率分别为 44.55 和 38.21 位/分钟。

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