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Binocular depth judgments on smoothly curved surfaces

机译:平滑曲面上的双目深度判断

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摘要

Binocular disparity is an important cue to depth, allowing us to make very fine discriminations of the relative depth of objects. In complex scenes, this sensitivity depends on the particular shape and layout of the objects viewed. For example, judgments of the relative depths of points on a smoothly curved surface are less accurate than those for points in empty space. It has been argued that this occurs because depth relationships are represented accurately only within a local spatial area. A consequence of this is that, when judging the relative depths of points separated by depth maxima and minima, information must be integrated across separate local representations. This integration, by adding more stages of processing, might be expected to reduce the accuracy of depth judgements. We tested this idea directly by measuring how accurately human participants could report the relative depths of two dots, presented with different binocular disparities. In the first, Two Dot condition the two dots were presented in front of a square grid. In the second, Three Dot condition, an additional dot was presented midway between the target dots, at a range of depths, both nearer and further than the target dots. In the final, Surface condition, the target dots were placed on a smooth surface defined by binocular disparity cues. In some trials, this contained a depth maximum or minimum between the target dots. In the Three Dot condition, performance was impaired when the central dot was presented with a large disparity, in line with predictions. In the Surface condition, performance was worst when the midpoint of the surface was at a similar distance to the targets, and relatively unaffected when there was a large depth maximum or minimum present. These results are not consistent with the idea that depth order is represented only within a local spatial area.
机译:双目视差是深度的重要提示,它使我们能够对物体的相对深度进行非常精细的区分。在复杂的场景中,此灵敏度取决于所查看对象的特定形状和布局。例如,光滑曲面上的点的相对深度的判断不如空白空间中的点的相对准确。有人认为发生这种情况是因为深度关系仅在局部空间区域内被精确表示。这样的结果是,在判断由深度最大值和最小值分开的点的相对深度时,必须在单独的局部表示中整合信息。通过增加更多的处理阶段,这种集成可能会降低深度判断的准确性。我们通过测量人类参与者报告双点视差不同的两个点的相对深度的准确度,直接测试了这个想法。在第一个“两点”条件下,两个点显示在方形网格的前面。在第二个“三点”条件下,在目标点之间的中间深度处,在比目标点更近和更远的深度范围内,出现了一个附加点。在最终的“表面”条件下,将目标点放置在由双目视差提示定义的平滑表面上。在某些试验中,这包含目标点之间的最大深度或最小深度。在三点条件下,当中心点出现较大差异时,性能会受到影响,这与预测一致。在“表面”条件下,当表面的中点到目标的距离相似时,性能最差;而在出现较大的最大深度或最小深度时,性能则相对不受影响。这些结果与仅在局部空间区域内表示深度顺序的想法不一致。

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