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Study on the Effects of Brightness Contrast on Steady-State Motion Visual Evoked Potential

机译:亮度对比度对稳态运动视觉诱发电位影响的研究

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Traditional steady - state visual evoked potential (SSVEP) using light flicker stimulation may easy cause visual fatigue with a consequent reduction of recognition accuracy. In the previous study, we proposed a steady - state motion visual evoked potential (SSMVEP) brain - computer interface (BCI) method. A black - white ring - shaped checkerboard was used as the visual stimulus paradigm in this study. The movement patterns of the checkerboard included contraction and expansion. Based on the signal-to-noise ratio (SNR), recognition accuracy and anti-fatigue properties, the effects of black-white brightness contrast on the brain response were investigated. Experimental results indicated that when the contrast ratio was the highest, it could obtain higher recognition accuracy and SNR, yet it was easy to cause visual fatigue. When the contrast was the lowest, the sensitivity of the eyes against flicker reduced to the lowest, and it could reduce visual fatigue. However the recognition accuracy and SNR were low. In contrast, the appropriate contrast could guarantee high SNR and recognition accuracy, and as much as possible to reduce the visual fatigue.
机译:使用轻闪烁刺激的传统稳态视觉诱发电位(SSVEP)可能随着识别准确性的而易于导致的视觉疲劳。在以前的研究中,我们提出了一个稳态运动视觉诱发电位(SSMVEP)脑 - 计算机接口(BCI)方法。使用黑白环形棋盘作为本研究中的视觉刺激范例。棋盘的运动模式包括收缩和扩展。基于信噪比(SNR),识别准确度和抗疲劳性能,研究了黑白亮度对比对脑反应上的影响。实验结果表明,当对比度最高时,它可以获得更高的识别精度和SNR,但它很容易引起视觉疲劳。当对比度最低时,眼睛对闪烁的敏感性降低到最低,并且它可以降低视觉疲劳。然而,识别准确性和SNR低。相比之下,适当的对比可以保证高的SNR和识别准确性,尽可能减少视觉疲劳。

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