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How the early visual system extract angles and junctions embedded within contour stimuli?

机译:早期视觉系统如何提取角度和结嵌入轮廓刺激内的角度?

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In order to study neuronal basis to extract Angles and junctions embedded within contours, we conducted extracellular recordings, while two macaque monkeys performed the fixation task. Angle stimuli were the combination of two straight half lines. Each line was drawn from the center to outside the classical receptive fields in one of 12 directions. In the superficial layer of area V2, 91 out of 114 neurons showed selective responses to these angle stimuli. Of these, 41 neurons (36%) showed selective responses to wide angles between 60° and 150°, which were distinct from responses to straight lines or sharp angles (30°). When we tested these neurons' selectivity to the 12 individual half lines, the preferred directions were more or less consistent with one or two components of the optimal angle stimuli. These results suggest that the angle selectivity in area V2 was largely dependent on the representation of individual line components. We suggest that area V2 is the first step to extract information of angles embedded within contour stimuli.
机译:为了研究神经元基础,以提取嵌入轮廓内嵌入的角度和结,我们进行了细胞外记录,而两个猕猴进行了固定任务。角度刺激是两条直半线的组合。每条线从12个方向中的一个从中心绘制到经典接收领域之一。在114个神经元中的区域V2,91中的浅层层中显示出对这些角度刺激的选择性反应。其中,41神经元(36%)显示出在60°和150°之间的宽角度的选择性反应,其与直线或尖锐角度(30°)不同。当我们将这些神经元的选择性测试到12个单线时,优选的方向或多或少一致地与最佳角度刺激的一个或两个组分一致。这些结果表明,面积V2中的角度选择性在很大程度上取决于各个线组分的表示。我们建议区域V2是提取嵌入在轮廓刺激内的角度信息的第一步。

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