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Attentional Modulation of Neuromagnetic Evoked Responses in Early Human Visual Cortex and Parietal Lobe following a Rank-Order Rule

机译:遵循人类秩序视觉规则的早期人类视觉皮层和顶叶神经磁诱发反应的注意调制。

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摘要

Top-down voluntary attention modulates the amplitude of magnetic evoked fields in the human visual cortex. Whether such modulation is flexible enough to adapt to the demands of complex tasks in which abstract rules must be applied to select a target in the presence of distracters remains unclear. We recorded brain neuromagnetic activity using whole-head magnetoencephalography in 14 human subjects during a rule-guided target selection task, and applied event-related Synthetic Aperture Magnetometry to image instantaneous changes in neuromagnetic source activity throughout the brain. During the task subjects selected one of two stimuli (the target) and ignored the other (the distracter) based on a color-rank rule (color 1 > color 2 > color 3). Our results revealed that in early visual color-sensitive areas and the parietal cortex visual stimuli evoke activity that scaled following the rank-order rule. This effect was stronger and occurred later in the parietal lobe (∼200 ms after target/distracter onset) relative to early visual areas (∼180 ms). Moreover, we found that transient changes in the target's motion direction evoked stronger responses relative to similar changes in the distracter at ∼180 ms from change onset in contralateral areas hMT+/V5. These results suggest that during target selection and allocation of attention to a stimulus, top-down signals adjust their intensity following complex selection rules according to the organism's priorities, thereby differentially modulating neuromagnetic activity across visual cortical areas.
机译:自上而下的自愿注意会调制人类视觉皮层中电磁诱发磁场的振幅。尚不清楚这种调制是否足够灵活以适应复杂任务的需求,在这种复杂任务中,在存在干扰因素的情况下必须应用抽象规则来选择目标。我们在规则指导的目标选择任务中使用全脑磁脑图记录了14名人类受试者的大脑神经磁活动,并应用了事件相关的合成孔径磁强计来成像整个大脑中神经磁源活动的瞬时变化。在任务期间,受试者根据颜色等级规则(颜色1>颜色2>颜色3)选择两个刺激之一(目标),而忽略另一个(干扰物)。我们的研究结果表明,在早期视觉颜色敏感区域和顶叶皮层视觉刺激引起的活动按照等级顺序规则扩展。相对于早期的视觉区域(〜180 ms),这种效果更强,并且在顶叶中出现的时间更晚(在目标/干扰物开始后约200 ms)。此外,我们发现目标物体运动方向的瞬时变化相对于分散体hMT + / V5发生变化后约180 ms时相对于分散器的类似变化引起了更强的响应。这些结果表明,在目标选择和对刺激的注意分配过程中,自上而下的信号会根据生物体的优先级按照复杂的选择规则调整其强度,从而在视觉皮层区域差异调节神经磁活动。

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