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Electrophysiological Correlates of Binocular Stereo Depth without Binocular Disparities

机译:没有双目差距双目立体深度的电相关因素

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摘要

A small region of background presented to only one eye in an otherwise binocular display may, under certain conditions, be resolved in the visual system by interpreting the region as a small gap between two similar objects placed at different depths, with the gap hidden in one eye by parallax. This has been called monocular gap stereopsis. We investigated the electrophysiological correlate of this type of stereopsis by means of sum potential recordings in 12 observers, comparing VEP's for this stimulus (“Gillam Stereo”, Author BG has strong reservations about this term) with those for similar stimuli containing disparity based depth and with no depth (flat). In addition we included several control stimuli. The results show a pronounced early negative potential at a latency of around 170 ms (N170) for all stimuli containing non- identical elements, be they a difference caused by binocular disparity or by completely unmatched monocular contours. A second negative potential with latency around 270 ms (N270), on the other hand, is present only with stimuli leading to fusion and the perception of depth. This second component is similar for disparity-based stereopsis and monocular gap, or “Gillam Stereo” although slightly more pronounced for the former. We conjecture that the first component is related to the detection of differences between the images of the two eyes that may then either be fused, leading to stereopsis and the corresponding second potential, or else to inhibition and rivalry without a later trace in the VEP. The finding that that “Gillam Stereo” leads to cortical responses at the same short latencies as disparity based stereopsis indicates that it may partly rely on quite early cortical mechanisms.
机译:在某些情况下,可以通过将区域解释为放置在不同深度的两个相似物体之间的小间隙,在一个特定的条件下,在视觉系统中解决该区域中仅显示给一只眼睛的小区域的问题,该间隙隐藏在一个视差的眼睛。这被称为单眼间隙立体视。我们通过在12位观察者中的总电位记录调查了这种类型的立体视的电生理相关性,将这种刺激的VEP(“ Gillam Stereo”,作者BG对这个术语有强烈保留)与相似刺激(包含基于视差的深度和没有深度(平坦)。另外,我们包括了几个控制刺激。结果显示,对于包含不相同元素的所有刺激,在大约170毫秒的等待时间(N170)处都有明显的早期负电位,可能是由于双眼视差或完全不匹配的单眼轮廓引起的差异。另一方面,潜伏时间约为270 ms的第二个负电位(N270)仅在导致融合和深度感知的刺激下出现。第二种成分与基于视差的立体视和单眼间隙或“ Gillam Stereo”相似,尽管在前者中更为明显。我们推测,第一个成分与检测两只眼睛的图像之间的差异有关,然后可以融合这些图像,从而导致立体视和相应的第二种电位,或者与抑制和竞争有关,而VEP中没有后来的痕迹。发现“ Gillam Stereo”以与基于视差的立体视觉相同的短延迟而导致皮质反应的发现表明,它可能部分依赖于相当早的皮质机制。

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