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Attentional bias of competitive interactions in neuronal networks of early visual processing in the human brain.

机译:人脑早期视觉处理的神经元网络中竞争性相互作用的注意偏见。

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Multiple objects in a visual scene compete for neuronal representation. We investigated competitive neuronal dynamics in cortical networks of early visual processing in the human brain. Coloured picture streams flickered at 7.42 Hz, evoking the steady-state visual evoked potential (SSVEP), an electrophysiological response of neuronal populations in early visual areas synchronised by the external pacemaker. While these picture streams were at a fixed location in the upper left and right quadrant, respectively, additional competing picture streams flickering at a different frequency were continuously changing the distance to the stationary streams by slow motion. Analysis of the 7.42 Hz SSVEP amplitude revealed significant amplitude decreases when the competing stimulus was closer than about 4.5 degrees of visual angle. Sources of the SSVEP suppression effect were found in early visual areas of the ventral and dorsal processing streams. Attending the stationary stimulus resulted in no difference in 7.42 Hz SSVEP amplitude regardless of spatial separation to the competing stimulus. Contrary to the predictions of the model, we found co-amplification of the competing stimulus at close spatial proximity accompanied by an increase of an intermodulation frequency, suggesting integrated neuronal processing of target and competing stimuli when both streams are close together.
机译:视觉场景中的多个对象争夺神经元表示。我们调查了人类大脑早期视觉处理的皮质网络中竞争性神经元动力学。彩色图像流以7.42 Hz的频率闪烁,引起稳态视觉诱发电位(SSVEP),即早期视觉区域中神经元种群的电生理反应,由外部起搏器同步。当这些图片流分别位于左上象限和右上象限的固定位置时,以不同频率闪烁的其他竞争图片流通过慢动作不断改变了与静止流的距离。对7.42 Hz SSVEP振幅的分析显示,当竞争刺激的距离小于约4.5度的视角时,振幅会明显降低。 SSVEP抑制作用的来源是在腹侧和背侧加工流的早期视觉区域中发现的。参加静态刺激不会导致7.42 Hz SSVEP振幅的差异,而与竞争性刺激的空间分隔无关。与模型的预测相反,我们发现竞争性刺激在空间上接近时被共同放大,同时伴随着互调频率的增加,这表明当两种流靠近时,对目标和竞争性刺激的综合神经元处理。

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