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Contributions of binocular and monocular cues to motion-in-depth perception

机译:双眼和单眼线索对深度运动感知的贡献

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摘要

Intercepting and avoiding moving objects requires accurate motion-in-depth (MID) perception. Such motion can be estimated based on both binocular and monocular cues. Because previous studies largely characterized sensitivity to these cues individually, their relative contributions to MID perception remain unclear. Here we measured sensitivity to binocular, monocular, and combined cue MID stimuli using a motion coherence paradigm. We first confirmed prior reports of substantial variability in binocular MID cue sensitivity across the visual field. The stimuli were matched for eccentricity and speed, suggesting that this variability has a neural basis. Second, we determined that monocular MID cue sensitivity also varied considerably across the visual field. A major component of this variability was geometric: An MID stimulus produces the largest motion signals in the eye contralateral to its visual field location. This resulted in better monocular discrimination performance when the contralateral rather than ipsilateral eye was stimulated. Third, we found that monocular cue sensitivity generally exceeded, and was independent of, binocular cue sensitivity. Finally, contralateral monocular cue sensitivity was found to be a strong predictor of combined cue sensitivity. These results reveal distinct factors constraining the contributions of binocular and monocular cues to three-dimensional motion perception.
机译:拦截和避免移动物体需要准确的深度运动(MID)感知。可以基于双眼和单眼提示来估计这种运动。由于以前的研究主要描述了对这些线索的敏感性,因此尚不清楚它们对MID感知的相对贡献。在这里,我们使用运动相干范式测量了对双眼,单眼和组合提示MID刺激的敏感性。我们首先确认了先前的报道,即在整个视野中双眼MID提示灵敏度存在很大差异。刺激的偏心率和速度是匹配的,表明这种可变性具有神经基础。其次,我们确定单眼MID提示灵敏度在整个视野中也有很大差异。这种可变性的主要组成部分是几何:MID刺激会在与视野位置相反的一侧产生最大的眼动信号。当刺激对侧而不是同侧的眼睛时,这导致更好的单眼识别性能。第三,我们发现单眼提示灵敏度通常超过双眼提示灵敏度,并且与之无关。最后,发现对侧单眼提示灵敏度是组合提示灵敏度的有力预测指标。这些结果揭示了制约双眼和单眼线索对三维运动感知的贡献的独特因素。

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