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Disparity selectivity of neurons in monkey inferior temporal cortex.

机译:猴颞下皮质神经元的差异选择性。

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摘要

The inferior temporal cortex (IT) of the monkey, a final stage in the ventral visual pathway, has been known to process information on two-dimensional (2-D) shape, color, and texture. On the other hand, the dorsal visual pathway leading to the posterior parietal cortex has been known to process information on location in space. Likewise, neurons selective for binocular disparity, which convey information on depth, have been found mainly in areas along the dorsal visual pathway. Here, we report that many neurons in the IT are also selective for binocular disparity. We recorded extracellular activity from IT neurons and found that more than half of the neurons changed their response depending on the disparity added. The change was not attributed to monocular responses or eye movements. Most neurons selective for disparity were "near" or "far" cells; they preferred either crossed or uncrossed disparity, and only a small population was tuned to zero disparity. Disparity-selective neurons were also selective for shape. Most preferred the same type of disparity irrespective of the shape presented. Disparity preference was also invariant for the fronto-parallel translation of the stimuli in most of the neurons. Finally, nearby neurons exhibited similar disparity selectivity, suggesting the existence of a functional module for processing of binocular disparity in the IT. From the above and our recent findings, we suggest that the IT integrates shape and binocular disparity information, and plays an important role in the reconstruction of three-dimensional (3-D) surfaces.
机译:已知猴子的下颞叶皮质(IT)是腹侧视觉通路的最后阶段,可以处理二维(2-D)形状,颜色和纹理的信息。另一方面,已知通向顶叶后皮质的背侧视觉通路可处理有关空间位置的信息。同样,主要在沿背侧视觉通路的区域中发现了对双眼视差具有选择性的神经元,可传递深度信息。在这里,我们报告说,IT中的许多神经元对双眼视差也具有选择性。我们记录了IT神经元的细胞外活动,发现超过一半的神经元根据添加的差异改变了它们的反应。该变化不归因于单眼反应或眼球运动。对差异有选择性的大多数神经元是“近”或“远”细胞。他们更喜欢交叉差异或非交叉差异,只有一小部分人口被调整为零差异。视差选择性神经元对形状也具有选择性。不论呈现的形状如何,最优选相同类型的视差。视差偏好对于大多数神经元中的刺激的额叶平行翻译也是不变的。最后,附近的神经元表现出相似的视差选择性,表明在IT中存在用于处理双眼视差的功能模块。从以上和我们最近的发现中,我们建议IT集成形状和双眼视差信息,并在三维(3-D)曲面的重建中起重要作用。

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