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首页> 外文期刊>Journal of vision >Depth perception from dynamic occlusion in motion parallax: Roles of expansion-compression versus accretion-deletion
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Depth perception from dynamic occlusion in motion parallax: Roles of expansion-compression versus accretion-deletion

机译:动态闭塞在运动视差中的深度感知:膨胀-压缩与增生-缺失的作用

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Abstract Abstract: Abstract?? Motion parallax, or differential retinal image motion from observer movement, provides important information for depth perception. We previously measured the contribution of shear motion parallax to depth, which is only composed of relative motion information. Here, we examine the roles of relative motion and accretion-deletion information in dynamic occlusion motion parallax. Observers performed two-alternative forced choice depth-ordering tasks in response to low spatial frequency patterns of horizontal random dot motion that were synchronized to the observer's head movements. We examined conditions that isolated or combined expansion-compression and accretion-deletion across a range of simulated relative depths. At small depths, expansion-compression provided reliable depth perception while accretion-deletion had a minor contribution: When the two were in conflict, the perceived depth was dominated by expansion-compression. At larger depths in the cue-conflict experiment, accretion-deletion determined the depth-ordering performance. Accretion-deletion in isolation did not yield any percept of depth even though, in theory, it provided sufficient information for depth ordering. Thus, accretion-deletion can substantially enhance depth perception at larger depths but only in the presence of relative motion. The results indicate that expansion-compression contributes to depth from motion parallax across a broad range of depths whereas accretion-deletion contributes primarily at larger depths.
机译:摘要摘要:摘要?运动视差或来自观察者运动的差分视网膜图像运动为深度感知提供了重要信息。我们之前测量了剪切运动视差对深度的贡献,该深度仅由相对运动信息组成。在这里,我们研究了相对运动和增删信息在动态遮挡运动视差中的作用。观察者响应于与观察者的头部运动同步的水平随机点运动的低空间频率模式,执行了两种选择的强制选择深度排序任务。我们研究了在一定范围的模拟相对深度中隔离或组合了膨胀-压缩和增生-缺失的条件。在较小深度处,扩展压缩可提供可靠的深度感知,而增生-删除的贡献较小:当两者冲突时,感知深度由扩展压缩主导。在提示冲突实验中,在更大的深度处,吸积-删除决定了深度排序性能。即使从理论上讲,它为深度排序提供了足够的信息,但孤立地进行删除-删除不会产生任何深度感知。因此,仅在存在相对运动的情况下,吸积-缺失可以在较大深度显着增强深度感知。结果表明,膨胀-压缩有助于较大范围内运动视差的深度,而吸积-删除主要在较大深度处起作用。

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