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首页> 外文期刊>Journal of Cognitive Neuroscience >Motion-defined surface segregation in human visual cortex
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Motion-defined surface segregation in human visual cortex

机译:人类视觉皮层中运动定义的表面分离

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Surface segregation provides an efficient way to parse the visual scene for perceptual analysis. Here, we investigated the segregation of a bivectorial motion display into transparent surfaces through a psychophysical task and fMRI. We found that perceptual transparency correlated with neural activity in the early areas of the visual cortex, suggesting these areas may be involved in the segregation of motion-defined surfaces. Two oppositely rotating, uniquely colored random dot kinematograms (RDKs) were presented either sequentially or in a spatially interleaved manner, displayed at varying alternation frequencies. Participants reported the color and rotation direction pairing of the RDKs in the psychophysical task. The spatially interleaved display generated the percept of motion transparency across the range of frequencies tested, yielding ceiling task performance. At high alternation frequencies, performance on the sequential display also approached ceiling, indicative of perceived transparency. However, transparency broke down in lower alternation frequency sequential displays, producing performance close to chance. A corresponding pattern mirroring the psychophysical data was also evident in univariate and multivariate analyses of the fMRI BOLD activity in visual cortical areas V1, V2, V3, V3AB, hV4, and V5/MT+. Using gray RDKs, we found significant presentation by frequency interactions in most areas; differences in BOLD signal between presentation types were significant only at the lower alternation frequency. Multivariate pattern classification was similarly unable to discriminate between presentation types at the higher frequency. This study provides evidence that early visual cortex may code for motion-defined surface segregation, which in turn may enable perceptual transparency.
机译:表面隔离提供了一种有效的方法来解析视觉场景以进行感知分析。在这里,我们研究了通过心理物理任务和功能磁共振成像将双矢量运动显示分离到透明表面中的情况。我们发现在视觉皮层的早期区域,知觉的透明性与神经活动相关,表明这些区域可能与运动定义的表面的分离有关。顺序显示或以空间交错的方式显示两个相反旋转的,唯一着色的随机点运动图(RDK),以不同的交替频率显示。参与者报告了RDK在心理物理任务中的颜色和旋转方向配对。空间交错显示在整个测试频率范围内产生了运动透明感,产生了天花板任务性能。在高交替频率下,顺序显示的性能也接近上限,这表明可以感知到的透明度。但是,在较低的交替频率顺序显示中,透明度降低了,从而产生了接近偶然的性能。在视觉皮层区域V1,V2,V3,V3AB,hV4和V5 / MT +的fMRI BOLD活动的单变量和多变量分析中,也反映了反映心理生理数据的相应模式。使用灰色RDK,我们发现在大多数区域中频率交互作用的表现很明显。表示类型之间的BOLD信号差异仅在较低的交替频率下才有意义。类似地,多模式分类不能以较高的频率区分显示类型。这项研究提供了证据,即早期的视觉皮层可能编码了运动定义的表面分离,从而可以实现感知透明。

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