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Simultaneous determination of depth and motion in early vision

机译:同时确定早期视力的深度和运动

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We investigated computationally the role of V1 complex cells in the simultaneous determination of depth and motion, in conjunction with spatiotemporal response characteristics of the cells. First, we examined whether a pooling of simple-cell units with monocular, spatiotemporal response profiles evokes binocular, spatiotemporal response profiles of complex cells. Second, we examined whether a population of the cascade complex-cell models yields the responses being consistent with the perception of depth and motion. We tested various stimuli including ambiguous cases that consist of interocular time delay without spatial disparity. Our simulation study showed that a pooling of simple cells leads to the generation of binocular response profiles of complex cells, and that a population of the complex cells provides a basis for the simultaneous perception of depth and motion.
机译:我们通过计算研究了V1复杂细胞在同时确定深度和运动以及细胞时空响应特征的过程中的作用。首先,我们检查了具有单眼时空反应谱的简单细胞单元的集合是否引起了复杂细胞的双眼时空反应谱。其次,我们检查了级联复杂细胞模型的种群是否产生与深度和运动感知一致的响应。我们测试了各种刺激,包括由眼间时间延迟而没有空间差异的模棱两可的情况。我们的模拟研究表明,简单细胞的汇集会导致复杂细胞的双眼反应图的生成,并且复杂细胞的群体为同时感知深度和运动提供了基础。

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