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Performance Evaluation of Visual Noise Imposed Stochastic Resonance Effect on Brain-Computer Interface Application: A Comparison Between Motion-Reversing Simple Ring and Complex Checkerboard Patterns

机译:视觉噪声的性能评估对脑电脑界面的应用随机共振效应:运动倒车简单环与复杂棋盘图案的比较

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摘要

Adding noise to a weak input signal can enhance the response of a non-linear system, a phenomenon known as stochastic resonance (SR). SR has been demonstrated in a variety of diverse sensory systems including the visual system, where visual noise enhances human motion perception and detection performance. The SR effect has not been extensively studied in brain-computer interface (BCI) applications. This study compares the performance of BCIs based on SR-influenced steady-state motion visual evoked potentials. Stimulation paradigms were used between a periodically monochromatic motion-reversing simple ring and complex alternating checkerboard stimuli. To induce the SR effect, dynamic visual noise was masked on both the periodic simple and complex stimuli. Offline results showed that the recognition accuracy of different stimulation targets followed an inverted U-shaped function of noise level, which is a hallmark of SR. With the optimal visual noise level, the proposed visual noise masked checkerboard BCI paradigm achieved faster and more stable detection performance due to the noise-enhanced brain responses. This work demonstrates that the SR effect can be employed in BCI applications and can achieve considerable performance improvements.
机译:向弱输入信号添加噪声可以增强非线性系统的响应,称为随机共振(SR)的现象。 SR已经在各种不同的感官系统中证明,包括视觉系统,其中视觉噪声提高人类运动感知和检测性能。脑电脑界面(BCI)应用中没有广泛研究SR效果。本研究比较了基于SR影响稳态运动视觉诱发电位的BCIS的性能。在定期单色运动反转简单环和复合交替棋盘刺激之间使用刺激范式。为了诱导SR效果,在周期性简单和复杂的刺激上掩盖了动态视觉噪声。离线结果表明,不同刺激目标的识别准确性遵循倒置的U形函数的噪声水平,这是SR的标志。利用最佳的视觉噪声水平,由于噪声增强的脑响应,所提出的视觉噪声屏蔽棋盘BCI范例达到了更快,更稳定的检测性能。这项工作表明,SR效应可以在BCI应用中使用,并可以实现相当大的性能改进。

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