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首页> 外文期刊>Journal of vision >Necker cube: Stimulus-related (low-level) and percept-related (high-level) EEG signatures early in occipital cortex
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Necker cube: Stimulus-related (low-level) and percept-related (high-level) EEG signatures early in occipital cortex

机译:Necker cube:枕叶皮质早期的刺激相关(低水平)和知觉相关(高水平)EEG信号

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During observation of an ambiguous Necker cube, our percept changes spontaneously although the external stimulus does not. An EEG paradigm allowing time-resolved EEG measurement during endogenous perceptual reversals recently revealed a chain of ERP correlates beginning with an early occipital positivity at around 130 ms (Reversal Positivity, a??RPa??). In order to better understand the functional role of this RP, we investigated its relation to the P100, which is spatiotemporally close, typically occurring 100 ms after onset of a visual stimulus at occipital electrodes. We compared the relation of the ERP amplitudes to varying sizes of ambiguous Necker cubes. The main results are: (1) The P100 amplitude increases monotonically with stimulus size but is independent of the participants' percept. (2) The RP, in contrast, is percept-related and largely unaffected by stimulus size. (3) A similar pattern to RP was found for reaction times: They depend on the percept but not on stimulus size. We speculate that the P100 reflects processing of elementary visual features, while the RP is related to a processing conflict during 3D interpretation that precedes a reversal. The present results indicate that low-level visual processing (related to stimulus size) and (relative) high-level processing (related to perceptual reversal) occur in close spatial and temporal vicinity.
机译:在观察模棱两可的Necker立方体期间,我们的感知会自发改变,尽管外部刺激没有改变。最近,一种脑电图范式允许在内源性知觉逆转过程中进行时间分辨的脑电图测量,最近发现一系列ERP相关性始于约130 ms的早期枕骨阳性(逆转阳性,a ?? RPa ??)。为了更好地了解此RP的功能作用,我们研究了其与P100的关系,P100时空接近,通常在枕电极视觉刺激发作后100毫秒发生。我们比较了ERP振幅与歧义Necker立方体大小变化之间的关系。主要结果是:(1)P100振幅随刺激大小而单调增加,但与参与者的感知无关。 (2)相反,RP与知觉有关,并且在很大程度上不受刺激规模的影响。 (3)在反应时间上发现了与RP类似的模式:它们取决于感知,而不取决于刺激的大小。我们推测P100反映了基本视觉特征的处理,而RP与反转之前3D解释期间的处理冲突有关。目前的结果表明,低级视觉处理(与刺激大小有关)和(相对)高级处理(与感知逆转有关)发生在空间和时间附近。

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