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首页> 外文期刊>Neuron >Transient induced gamma-band response in EEG as a manifestation of miniature saccades.
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Transient induced gamma-band response in EEG as a manifestation of miniature saccades.

机译:短暂诱发的脑电图伽玛谱带反应,表现为微型扫视。

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The induced gamma-band EEG response (iGBR) recorded on the scalp is widely assumed to reflect synchronous neural oscillation associated with object representation, attention, memory, and consciousness. The most commonly reported EEG iGBR is a broadband transient increase in power at the gamma range approximately 200-300 ms following stimulus onset. A conspicuous feature of this iGBR is the trial-to-trial poststimulus latency variability, which has been insufficiently addressed. Here, we show, using single-trial analysis of concomitant EEG and eye tracking, that this iGBR is tightly time locked to the onset of involuntary miniature eye movements and reflects a saccadic "spike potential." The time course of the iGBR is related to an increase in the rate of saccades following a period of poststimulus saccadic inhibition. Thus, whereas neuronal gamma-band oscillations were shown conclusively with other methods, the broadband transient iGBR recorded by scalp EEG reflects properties of miniature saccade dynamics rather than neuronal oscillations.
机译:头皮上记录的诱导伽马带EEG反应(iGBR)被广泛认为是反映与对象表示,注意力,记忆和意识相关的同步神经振荡。最常见的EEG iGBR是刺激发生后大约200-300 ms的伽马范围内的宽带瞬时功率增加。该iGBR的一个显着特征是试验到试验后的刺激潜伏期变异性,尚未充分解决。在这里,我们通过对伴随的EEG和眼动追踪的单次试验分析表明,该iGBR紧紧地锁定了非自愿性微型眼动的发生,并反映了跳动的“尖峰电位”。 iGBR的时程与刺激后的刺激声抑制一段时间后的扫视率增加有关。因此,虽然神经元伽马带振荡已与其他方法一起确定性地显示,但头皮脑电图记录的宽带瞬态iGBR反映的是微型扫视动力学特性,而不是神经元振荡。

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