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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Central V4 receptive fields are scaled by the V1 cortical magnification and correspond to a constant-sized sampling of the V1 surface.
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Central V4 receptive fields are scaled by the V1 cortical magnification and correspond to a constant-sized sampling of the V1 surface.

机译:中心V4接收场通过V1皮质放大倍数缩放,并且对应于V1表面的恒定大小采样。

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摘要

The mapping of the topographic representation of the visual field onto cortical areas changes throughout the hierarchy of cortical visual areas. The changes are believed to reflect the establishment of modules with different spatial processing emphasis. The receptive fields (RFs) of neurons within these modules, however, may not be governed by the same spatial topographic map parameters. Here it is shown that the RFs of area V4 neurons (centered 1-12 degrees in eccentricity) are based on a circularly symmetric sampling of the primary visual cortical retinotopic map. No eccentricity dependent magnification beyond that observed in V1 is apparent in the V4 neurons. The size and shape of V4 RFs can be explained by a simple, constant sized, two-dimensional Gaussian sample of visual input from the retinotopic map laid out across the surface of V1. Inferences about the spatial scale of interactions within the receptive fields of neurons cannot be based on a visual area's apparent cortical magnification derived from topographic mapping.
机译:在整个皮层视觉区域的层次结构中,视野的地形图表示到皮层区域的映射都会发生变化。相信这些变化反映了具有不同空间处理重点的模块的建立。但是,这些模块中神经元的感受野(RF)可能不受相同的空间地形图参数控制。在此显示,区域V4神经元的RF(偏心中心为1-12度)基于原始视觉皮层视网膜视点图的圆形对称采样。在V4神经元中没有超过V1的偏心率依赖放大率。 V4 RF的大小和形状可以通过一个简单的,恒定大小的二维高斯视觉输入样本来解释,该样本来自在V1的整个表面上放置的视网膜视点图。关于神经元感受野内相互作用空间尺度的推论不能基于从地形图得出的视觉区域的表观皮层放大率。

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