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首页> 外文期刊>Journal of Neurophysiology >Surround suppression of v1 neurons mediates orientation-based representation of high-order visual features.
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Surround suppression of v1 neurons mediates orientation-based representation of high-order visual features.

机译:v1神经元的周围抑制可以调解基于方向的高阶视觉特征表示。

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摘要

Neurons with surround suppression have been implicated in processing high-order visual features such as contrast- or texture-defined boundaries and subjective contours. However, little is known regarding how these neurons encode high-order visual information in a systematic manner as a population. To address this issue, we have measured detailed spatial structures of classical center and suppressive surround regions of receptive fields of primary visual cortex (V1) neurons and examined how a population of such neurons allow encoding of various high-order features and shapes in visual scenes. Using a novel method to reconstruct structures, we found that the center and surround regions are often both elongated parallel to each other, reminiscent of on and off subregions of simple cells without surround suppression. These structures allow V1 neurons to extract high-order contours of various orientations and spatial frequencies, with a variety of optimal values across neurons. The results show that a wide range of orientations and widths of the high-order features are systematically represented by the population of V1 neurons with surround suppression.
机译:具有周围抑制的神经元已牵涉到处理高阶视觉特征,例如对比度或纹理定义的边界和主观轮廓。然而,关于这些神经元如何以系统的方式作为种群编码高阶视觉信息的知之甚少。为了解决这个问题,我们已经测量了主要视觉皮层(V1)神经元接受区域的经典中心和抑制性周围区域的详细空间结构,并研究了这种神经元的数量如何允许对视觉场景中的各种高阶特征和形状进行编码。使用一种新颖的方法来重建结构,我们发现中心区域和周围区域通常都彼此平行地拉长,让人联想到没有周围抑制的简单单元格的开和关子区域。这些结构允许V1神经元提取各种方向和空间频率的高阶轮廓,并在整个神经元中具有各种最佳值。结果表明,高阶特征的宽范围的方向和宽度由具有周围抑制的V1神经元群体系统地表示。

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