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首页> 外文期刊>Brain research >Attentional changes in pre-stimulus oscillatory activity within early visual cortex are predictive of human visual performance.
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Attentional changes in pre-stimulus oscillatory activity within early visual cortex are predictive of human visual performance.

机译:早期视觉皮层内刺激前振荡活动的注意变化预示着人类的视觉表现。

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Physiological and neuroimaging studies provide evidence to suggest that attentional mechanisms operating within the fronto-parietal network may exert top-down control on early visual areas, priming them for forthcoming sensory events. The believed consequence of such priming is enhanced task performance. Using the technique of magnetoencephalography (MEG), we investigated this possibility by examining whether attention-driven changes in cortical activity are correlated with performance on a line-orientation judgment task. We observed that, approximately 200 ms after a covert attentional shift towards the impending visual stimulus, the level of phase-resetting (transient neural coherence) within the calcarine significantly increased for 2-10 Hz activity. This was followed by a suppression of alpha activity (near 10 Hz) which persisted until the onset of the stimulus. The levels of phase-resetting, alpha suppression and subsequent behavioral performance varied between subjects in a systematic fashion. The magnitudes of phase-resetting and alpha-band power were negatively correlated, with high levels of coherence associated with high levels of performance. We propose that top-down attentional control mechanisms exert their initial effects within the calcarine through a phase-resetting within the 2-10 Hz band, which in turn triggers a suppression of alpha activity, priming early visual areas for incoming information and enhancing behavioral performance.
机译:生理和神经影像学研究提供了证据,表明在额顶网络中运行的注意力机制可能对早期视觉区域施加自上而下的控制,从而为即将发生的感觉事件做好准备。这种启动的可信结果是增强了任务性能。使用脑磁图(MEG)技术,我们通过检查注意力驱动的皮层活动变化是否与线方向判断任务的表现相关来研究这种可能性。我们观察到,在隐秘的注意力转移到即将出现的视觉刺激后大约200毫秒,钙盐碱内的相变(瞬态神经相干性)水平对于2-10 Hz活动显着增加。这之后是α活性的抑制(接近10Hz),持续到刺激开始。相位重置,α抑制和后续行为表现的水平以系统的方式在对象之间变化。相位重置的大小和α频段功率呈负相关,与高水平的连贯性和高水平的性能相关。我们建议自上而下的注意力控制机制通过在2-10 Hz频段内进行相位重置,在钙cal碱中发挥其初始作用,进而触发α活性的抑制,引发早期视觉区域的传入信息并增强行为表现。

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