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Two-dimensional substructure of stereo and motion interactions in macaque visual cortex.

机译:猕猴视觉皮层中的立体和运动相互作用的二维子结构。

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摘要

The analysis of object motion and stereoscopic depth are important tasks that are begun at early stages of the primate visual system. Using sparse white noise, we mapped the receptive field substructure of motion and disparity interactions in neurons in V1 and MT of alert monkeys. Interactions in both regions revealed subunits similar in structure to V1 simple cells. For both motion and stereo, the scale and shape of the receptive field substructure could be predicted from conventional tuning for bars or dot-field stimuli, indicating that the small-scale interactions were repeated across the receptive fields. We also found neurons in V1 and in MT that were tuned to combinations of spatial and temporal binocular disparities, suggesting a possible neural substrate for the perceptual Pulfrich phenomenon. Our observations constrain computational and developmental models of motion-stereo integration.
机译:对对象运动和立体深度的分析是重要的任务,它们是在灵长类动物视觉系统的早期阶段开始的。使用稀疏的白噪声,我们绘制了警报猴子的V1和MT中神经元的运动场和视差相互作用的感受野子结构。两个区域的相互作用揭示了亚基的结构类似于V1单细胞。对于运动和立体声,可以通过对条或点场刺激的常规调整来预测接收场子结构的大小和形状,这表明在接收场上重复了小规模的交互作用。我们还发现V1和MT中的神经元已调整为时空双眼视差的组合,这暗示了感知性Pulfrich现象的可能神经底物。我们的观察结果限制了运动-立体积分的计算和开发模型。

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