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PNAS Plus: Coherent alpha oscillations link current and future receptive fields during saccades

机译:PNAS Plus:相干阿尔法振荡将扫视过程中的当前和未来接收场联系起来

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摘要

Oscillations are ubiquitous in the brain, and they can powerfully influence neural coding. In particular, when oscillations at distinct sites are coherent, they provide a means of gating the flow of neural signals between different cortical regions. Coherent oscillations also occur within individual brain regions, although the purpose of this coherence is not well understood. Here, we report that within a single brain region, coherent alpha oscillations link stimulus representations as they change in space and time. Specifically, in primate cortical area V4, alpha coherence links sites that encode the retinal location of a visual stimulus before and after a saccade. These coherence changes exhibit properties similar to those of receptive field remapping, a phenomenon in which individual neurons change their receptive fields according to the metrics of each saccade. In particular, alpha coherence, like remapping, is highly dependent on the saccade vector and the spatial arrangement of current and future receptive fields. Moreover, although visual stimulation plays a modulatory role, it is neither necessary nor sufficient to elicit alpha coherence. Indeed, a similar pattern of coherence is observed even when saccades are made in darkness. Together, these results show that the pattern of alpha coherence across the retinotopic map in V4 matches many of the properties of receptive field remapping. Thus, oscillatory coherence might play a role in constructing the stable representation of visual space that is an essential aspect of conscious perception.
机译:振荡在大脑中无处不在,并且可以强烈影响神经编码。特别是,当不同位置的振荡相干时,它们提供了控制不同皮质区域之间神经信号流的方法。相干振荡也发生在单个大脑区域内,尽管这种相干的目的还不是很清楚。在这里,我们报告说,在单个大脑区域内,相干的阿尔法振荡会随着空间和时间的变化链接刺激信号。具体来说,在灵长类动物皮层区域V4中,α相干性链接了在扫视之前和之后编码视觉刺激的视网膜位置的位点。这些相干变化表现出与感受野重映射相似的特性,在这种现象中,单个神经元根据每个扫视的量度改变其感受野。特别是,像重新映射一样,α相干高度依赖于扫视向量以及当前和将来的接收场的空间排列。而且,尽管视觉刺激起调节作用,但引起α相干性既不是必需的也不是足够的。确实,即使在黑暗中进行扫视,也可以观察到类似的连贯模式。总之,这些结果表明,V4中整个视网膜位图的α相干性模式与感受野重映射的许多特性相匹配。因此,振荡连贯性可能在构建视觉空间的稳定表示中发挥作用,而视觉空间是意识感知的重要方面。

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