首页> 外文期刊>International journal of psychophysiology: official journal of the International Organization of Psychophysiology >Cortical oscillatory activity associated with the perception of illusory and real visual contours.
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Cortical oscillatory activity associated with the perception of illusory and real visual contours.

机译:皮层振荡活动与虚幻和真实视觉轮廓的感知有关。

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We used magnetoencephalography (MEG) to examine the nature of oscillatory brain rhythms when passively viewing both illusory and real visual contours. Three stimuli were employed: a Kanizsa triangle; a Kanizsa triangle with a real triangular contour superimposed; and a control figure in which the corner elements used to form the Kanizsa triangle were rotated to negate the formation of illusory contours. The MEG data were analysed using synthetic aperture magnetometry (SAM) to enable the spatial localisation of task-related oscillatory power changes within specific frequency bands, and the time-course of activity within given locations-of-interest was determined by calculating time-frequency plots using a Morlet wavelet transform. In contrast to earlier studies, we did not find increases in gamma activity (>30 Hz) to illusory shapes, but instead a decrease in 10-30 Hz activity approximately 200 ms after stimulus presentation. The reduction in oscillatory activity was primarily evident within extrastriate areas, including the lateral occipital complex (LOC). Importantly, this same pattern of results was evident for each stimulus type. Our results further highlight the importance of the LOC and a network of posterior brain regions in processing visual contours, be they illusory or real in nature. The similarity of the results for both real and illusory contours, however, leads us to conclude that the broadband (<30 Hz) decrease in power we observed is more likely to reflect general changes in visual attention than neural computations specific to processing visual contours.
机译:当被动观察虚幻的和真实的视觉轮廓时,我们使用了脑磁图(MEG)来检查振荡性脑节律的性质。使用了三种刺激:卡尼萨三角;带有真实三角形轮廓的Kanizsa三角形;一个控制图,其中旋转了用于形成Kanizsa三角形的角元素,以消除虚构轮廓的形成。使用合成孔径磁强计(SAM)分析MEG数据,以实现特定频段内与任务相关的振荡功率变化的空间定位,并通过计算时频确定给定关注位置内活动的时程使用Morlet小波变换绘制图。与早期的研究相反,我们没有发现伽马活性(> 30 Hz)增加到虚幻的形状,而是在刺激出现后约200 ms降低了10-30 Hz活性。振荡活动的减少主要在包括外侧枕骨复合体(LOC)在内的边缘区域内出现。重要的是,每种刺激类型的结果模式相同。我们的结果进一步强调了LOC和后脑区域网络在处理视觉轮廓中的重要性,无论它们是虚幻的还是真实的。但是,对于真实轮廓和虚幻轮廓,结果的相似性使我们得出结论:与特定于处理视觉轮廓的神经计算相比,观察到的宽带功率(<30 Hz)下降更可能反映了视觉注意力的一般变化。

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