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Spatial and Object-Based Attention Modulates Broadband High-Frequency Responses across the Human Visual Cortical Hierarchy

机译:基于空间和基于对象的注意力在人类视觉皮层层次结构中调节宽带高频响应

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摘要

One of the puzzling aspects in the visual attention literature is the discrepancy between electrophysiological and fMRI findings: whereas fMRI studies reveal strong attentional modulation in the earliest visual areas, single-unit and local field potential studies yielded mixed results. In addition, it is not clear to what extent spatial attention effects extend from early to high-order visual areas. Here we addressed these issues using electrocorticography recordings in epileptic patients. The patients performed a task that allowed simultaneous manipulation of both spatial and object-based attention. They were presented with composite stimuli, consisting of a small object (face or house) superimposed on a large one, and in separate blocks, were instructed to attend one of the objects. We found a consistent increase in broadband high-frequency (30–90 Hz) power, but not in visual evoked potentials, associated with spatial attention starting with V1/V2 and continuing throughout the visual hierarchy. The magnitude of the attentional modulation was correlated with the spatial selectivity of each electrode and its distance from the occipital pole. Interestingly, the latency of the attentional modulation showed a significant decrease along the visual hierarchy. In addition, electrodes placed over high-order visual areas (e.g., fusiform gyrus) showed both effects of spatial and object-based attention. Overall, our results help to reconcile previous observations of discrepancy between fMRI and electrophysiology. They also imply that spatial attention effects can be found both in early and high-order visual cortical areas, in parallel with their stimulus tuning properties.
机译:视觉注意力文献中令人费解的方面之一是电生理学与功能磁共振成像发现之间的差异:而功能磁共振成像研究显示,在最早的视觉区域中强烈的注意力调节,而单单位电势和局部视野电势研究则产生了混合结果。此外,尚不清楚空间注意力效应从早期视觉区域扩展到高阶视觉区域的程度。在这里,我们使用癫痫患者的皮质脑电图记录解决了这些问题。患者执行了一项任务,可以同时操纵空间和基于对象的注意力。向他们展示了复合刺激物,该刺激物由一个小物体(面部或房屋)叠加在一个大物体上构成,并在单独的区域中被指示参加其中一个物体。我们发现宽带高频(30–90 Hz)功率持续增加,但视觉诱发电位却没有,这与从V1 / V2开始并持续贯穿整个视觉层次的空间注意力相关。注意调制的大小与每个电极的空间选择性及其与枕骨极的距离相关。有趣的是,注意力调制的潜伏期沿视觉层次显着降低。另外,放置在高阶视觉区域(例如,梭状回)上的电极显示出空间和基于对象的注意力的效果。总体而言,我们的研究结果有助于调和先前fMRI与电生理学差异的观察结果。他们还暗示,在早期和高阶视觉皮层区域都可以发现空间注意力效应,与其刺激调节特性平行。

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