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Entrainment of theta, not alpha, oscillations is predictive of the brightness enhancement of a flickering stimulus

机译:Theta的夹带,而不是α,振荡是预测闪烁刺激的亮度增强

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Frequency-dependent brightness enhancement, where a flickering light can appear twice as bright as an equiluminant constant light, has been reported to exist within the alpha (8–12?Hz) band. Could oscillatory neural activity be driving this perceptual effect? Here, in two experiments, human subjects reported which of two flickering stimuli were brighter. Strikingly, 4?Hz stimuli were reported as brighter more than 80% of the time when compared to all other tested frequencies, even though all stimuli were equiluminant and of equal temporal length. Electroencephalography recordings showed that inter-trial phase coherence (ITC) of theta (4?Hz) was: (1) Significantly greater than alpha, contralateral to the flickering stimulus; (2) Enhanced by the presence of a second ipsilateral 4?Hz flickering stimulus; and (3) Uniquely lateralized, unlike the alpha band. Importantly, on trials with two identical stimuli (i.e. 4?Hz vs 4?Hz), the brightness discrimination judgment could be predicted by the hemispheric balance in the amount of 4?Hz ITC. We speculate that the theta rhythm plays a distinct information transfer role, where its ability to share information between hemispheres via entrainment promotes a better processing of visual information to inform a discrimination decision.
机译:据报道,频率依赖性亮度增强,其中闪烁的光可能出现两次作为均衡的恒定光,以存在于α(8-12·Hz)带内。振荡神经活动可以推动这种感知效果吗?这里,在两个实验中,人类受试者报告了两个闪烁的刺激中的哪一个更亮。令人惊讶的是,与所有其他测试频率相比,4?Hz刺激被报告为比80%的时间更亮,即使所有刺激都是均匀的,也是相同的时间长度。脑电图记录表明,Theta(4·Hz)的试验相干(ITC)是:(1)明显大于α,对闪烁刺激的对侧; (2)通过第二个Ipsilidal 4?Hz闪烁刺激的存在增强; (3)与alpha频段不同,唯一侧向化。重要的是,在具有两个相同刺激的试验(即4?Hz Vs 4?Hz)上,可以通过4?Hz ITC的量的半球平衡来预测亮度辨别判断。我们推测Theta节奏发挥着不同的信息转移作用,其中它通过夹带在半球之间共享信息的能力促使您更好地处理视觉信息以告知歧视决定。

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