首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Influence of the direction of elemental luminance gradients on the responses of V4 cells to textured surfaces.
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Influence of the direction of elemental luminance gradients on the responses of V4 cells to textured surfaces.

机译:元素亮度梯度方向对V4电池对纹理表面的响应的影响。

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摘要

The texture of an object provides important cues for its recognition; however, little is known about the neural representation of texture. To investigate the representation of texture in the visual cortex, we recorded single-cell activities in area V4 of macaque monkeys. To distinguish the sensitivity of the cells to texture parameters such as density and element size from that to spatial frequency, we used texture stimuli mimicking shaded granular surfaces. We varied the size and density of the texture elements and the direction of elemental luminance gradients (apparent shadings) as stimulus parameters. Most macaque V4 cells (151 of 170; 89%) exhibited sensitivity to the texture parameters. Interestingly, 21 of these cells were tuned to single shading directions (unidirectional tuning). This unidirectional tuning cannot be explained by complex-cell-like tuning for spectral power of spatial frequency, because texture stimuli with a shading direction and its opposite have almost the same spectral power. Unidirectional tunings of these cells were invariant for the position of the texture elements. Thus, this tuning cannot be explained by simple-cell-like phase-dependent spatial frequency tuning or selectivity to a particular arrangement of the elements. Moreover, the unidirectional tuning had a bias toward vertical directions, consistent with an anisotropy in the perception of three-dimensional shape from shading. This novel spatial property suggests that V4 cells are involved in extracting texture features from objects, including their three-dimensionality.
机译:对象的纹理为其识别提供了重要线索;但是,关于纹理的神经表示知之甚少。为了研究视觉皮层中纹理的表示,我们记录了猕猴V4区域中的单细胞活动。为了区分细胞对诸如密度和元素尺寸等纹理参数的敏感性与对空间频率的敏感性,我们使用了模仿阴影颗粒表面的纹理刺激。我们更改了纹理元素的大小和密度以及元素亮度梯度(表观阴影)的方向作为刺激参数。大多数猕猴V4细胞(170个中的151个; 89%)显示出对纹理参数的敏感性。有趣的是,这些单元格中有21个被调整到单个阴影方向(单向调整)。这种单向调整无法通过对空间频率的频谱功率进行类似复杂单元的调整来解释,因为具有阴影方向及其相反方向的纹理刺激具有几乎相同的频谱功率。这些单元的单向调整对于纹理元素的位置是不变的。因此,这种调整不能通过类似于简单单元的相位相关的空间频率调整或对元件的特定布置的选择性来解释。而且,单向调谐在垂直方向上有偏差,这与阴影对三维形状的感知中的各向异性一致。这种新颖的空间特性表明,V4细胞参与了从对象中提取纹理特征(包括三维)的过程。

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