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Fronto-Central Theta Oscillations Are Related to Oscillations in Saccadic Response Times (SRT): An EEG and Behavioral Data Analysis

机译:额中央θ振荡与跳频响应时间(SRT)的振荡有关:脑电图和行为数据分析

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摘要

The phase reset hypothesis states that the phase of an ongoing neural oscillation, reflecting periodic fluctuations in neural activity between states of high and low excitability, can be shifted by the occurrence of a sensory stimulus so that the phase value become highly constant across trials (Schroeder et al., 2008). From EEG/MEG studies it has been hypothesized that coupled oscillatory activity in primary sensory cortices regulates multi sensory processing (Senkowski et al. 2008). We follow up on a study in which evidence of phase reset was found using a purely behavioral paradigm by including also EEG measures. In this paradigm, presentation of an auditory accessory stimulus was followed by a visual target with a stimulus-onset asynchrony (SOA) across a range from 0 to 404 ms in steps of 4 ms. This fine-grained stimulus presentation allowed us to do a spectral analysis on the mean SRT as a function of the SOA, which revealed distinct peak spectral components within a frequency range of 6 to 11 Hz with a modus of 7 Hz. The EEG analysis showed that the auditory stimulus caused a phase reset in 7-Hz brain oscillations in a widespread set of channels. Moreover, there was a significant difference in the average phase at which the visual target stimulus appeared between slow and fast SRT trials. This effect was evident in three different analyses, and occurred primarily in frontal and central electrodes.
机译:相复位假说指出,正在进行的神经振荡的相位反映了高兴奋性和低兴奋性状态之间神经活动的周期性波动,可以通过感觉刺激的发生来改变相位,因此在整个试验中,相值变得高度恒定(Schroeder等人,2008)。根据EEG / MEG研究,已经假设初级感觉皮层中的耦合振荡活动会调节多感觉过程(Senkowski等,2008)。我们继续进行一项研究,在该研究中,通过包括EEG措施在内的纯粹行为范式发现了相复位的证据。在此范例中,听觉辅助刺激的出现之后是视觉目标,该目标具有从0到404毫秒范围内以4毫秒为步长的刺激发作异步(SOA)。这种细粒度的刺激表现使我们能够对平均SRT随SOA进行频谱分析,结果揭示了在6到11 Hz频率范围内的明显峰值频谱成分,模数为7 Hz。脑电图分析表明,听觉刺激在一系列广泛的通道中引起了7 Hz脑振荡的相位重置。此外,在慢速和快速SRT试验之间,视觉目标刺激出现的平均阶段存在显着差异。这种效果在三种不同的分析中均很明显,并且主要发生在额电极和中央电极中。

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