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MEG Phase Follows Conscious Perception during Binocular Rivalry Induced by Visual Stream Segregation

机译:MEG阶段跟随视觉流分离引起的双眼竞争中的有意识的感知。

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摘要

We have investigated an unusual form of binocular rivalry between two images that are flickered one to each eye, but are never presented simultaneously to the observer. The images were presented in alternation, with a brief dark period between the images. When the flicker frequency was <5 Hz, the subjects primarily experienced a unitary flicker that alternated between the two images. When the flicker frequency was >5 Hz, the subjects primarily experienced two single-image flickers that rival. We investigated magnetoencephalography (MEG) responses at the flicker frequency of the rival stimuli. We found that at some recording locations responses are phase-locked to the flicker that is consciously being perceived. At each flicker rate that induced rivalry, phase shifts following the conscious percept were found consistently at MEG sensors over midline frontal lobe. Most of these sensors show higher magnitude responses when two rivaling flickers are perceived than when a unitary alternating color flicker is perceived. At sensors over occipital lobe, the sensor locations that phase-locked to the perceived flicker depended on the color, orientation, and frequency of flicker. By contrast, sensors over parietal cortex respond preferentially to one flicker, even as the conscious percept changes. Apparently, a large-scale network of cell assemblies in occipital and frontal cortex, responds preferentially to the perceived stimulus during rivalry, and is sensitive to the timing of the flicker driving the conscious percept.
机译:我们研究了两只眼睛闪烁的两幅图像之间双目竞争的异常形式,但从未同时呈现给观察者。图像交替显示,图像之间短暂的暗周期。当闪烁频率<5 Hz时,受试者主要经历了在两个图像之间交替出现的单一闪烁。当闪烁频率> 5 Hz时,受试者主要经历两次可与之竞争的单幅图像闪烁。我们调查了磁脑电图(MEG)在竞争对手刺激的闪烁频率下的反应。我们发现在某些记录位置,响应被锁相到有意识地感知到的闪烁。在每一次引起竞争的闪烁速率下,在中线额叶上方的MEG传感器上都一致地观察到有意识感知后的相移。与感知到单一交替的颜色闪烁相比,当感知到两个相互竞争的闪烁时,这些传感器中的大多数显示出更高的幅度响应。在枕叶上方的传感器上,相位锁定到感知闪烁的传感器位置取决于闪烁的颜色,方向和频率。相比之下,即使意识感知发生变化,顶叶皮层上的传感器也会优先响应一次闪烁。显然,枕叶和额叶皮层中的细胞组件的大规模网络,在竞争过程中优先响应于感知到的刺激,并对闪烁驱动有意识感知的时机敏感。

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  • 来源
    《Cerebral Cortex》 |2006年第5期|597-608|共12页
  • 作者单位

    Department of Cognitive Sciences University of California Irvine CA 92697-5100 USA;

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  • 正文语种 eng
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