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Subcortical representation of non-Fourier image features.

机译:非傅立叶图像特征的提示。

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A fundamental goal of visual neuroscience is to identify the neural pathways representing different image features. It is widely argued that the early stages of these pathways represent linear features of the visual scene and that the nonlinearities necessary to represent complex visual patterns are introduced later in cortex. We tested this by comparing the responses of subcortical and cortical neurons to interference patterns constructed by summing sinusoidal gratings. Although a linear mechanism can detect the component gratings, a nonlinear mechanism is required to detect an interference pattern resulting from their sum. Consistent with in vitro retinal ganglion cell recordings, we found that interference patterns are represented subcortically by cat LGN Y-cells, but not X-cells. Linear and nonlinear tuning properties of LGN Y-cells were then characterized and compared quantitatively with those of cortical area 18 neurons responsive to interference patterns. This comparison revealed a high degree of similarity between the two neural populations, including the following: (1) the representation of similar spatial frequencies in both their linear and nonlinear responses, (2) comparable orientation selectivity for the high spatial frequency carrier of interference patterns, and (3) the same difference in their temporal frequency selectivity for drifting gratings versus the envelope of interference patterns. The present findings demonstrate that the nonlinear subcortical Y-cell pathway represents complex visual patterns and likely underlies cortical responses to interference patterns. We suggest that linear and nonlinear mechanisms important for encoding visual scenes emerge in parallel through distinct pathways originating at the retina.
机译:视觉神经科学的基本目标是识别代表不同图像特征的神经途径。众所周知,这些途径的早期阶段代表了视觉场景的线性特征,并且在皮质中稍后引入了表示复杂视觉模式所需的非线性。我们通过将皮质和皮质神经元的响应与通过求解正弦光栅构成的干涉图案的反应来测试。尽管线性机构可以检测分量的光栅,但是需要非线性机制来检测由其总和产生的干扰图案。与体外视网膜神经节细胞记录一致,我们发现干涉图案由CAT LGN Y细胞基于X细胞而不是X细胞表示。然后表征LGN Y细胞的线性和非线性调节性质,并响应于干涉图案定量与皮质区域18神经元的那些进行比较。这种比较揭示了两个神经群体之间的高度相似性,包括以下内容:(1)其线性和非线性响应的类似空间频率的表示,(2)干扰图案的高空间频率载波的相当方向选择性(3)与干扰图案的包膜相比,它们的时间频率选择性相同的差异。本研究结果表明,非线性亚尺寸Y细胞途径代表复杂的视觉模式,并且可能对干涉图案进行皮质响应的底层。我们建议通过源自视网膜的不同通路并联,对视觉场景的线性和非线性机制很重要。

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