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Emergence of motion-in-depth selectivity in the visual cortex through linear combination of binocular energy complex cells with different ocular dominance

机译:通过具有不同眼优势的双眼能量复合细胞的线性组合,在视觉皮层中出现深度运动选择性

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摘要

An architectural hypothesis for the origin of motion-in-depth selectivity in the visual cortex is proposed. On the basis of a time extension of the phase-based techniques for disparity estimation, we consider the computation of the total temporal derivative of the time-varying disparity through the combination of the responses of disparity energy units. The emergence of motion-in-depth tuning is pointed out in relation to the unbalanced ocular dominance of afferent binocular complex cells. The resulting cortical units of the model exhibit properties that can be directly compared with those reported in the literature for real cortical cells.
机译:提出了关于视觉皮层中深度运动选择性起源的体系结构假设。在基于相位的视差估计技术的时间扩展的基础上,我们考虑通过视差能量单位的响应的组合来计算时变视差的总时间导数。指出了与双眼传入复杂细胞的不平衡眼优势有关的深度运动调节的出现。模型所得的皮质单元具有可直接与文献中报道的真实皮质细胞进行比较的特性。

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