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Sensory Processing: Memory-guided saccades show effect of a perceptual illusion whereas visually guided saccades do not

机译:感官加工:记忆引导的扫视表现出知觉错觉的效果而视觉引导的扫视没有

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摘要

The double-drift stimulus (a drifting Gabor with orthogonal internal motion) generates a large discrepancy between its physical and perceived path. Surprisingly, saccades directed to the double-drift stimulus land along the physical, and not perceived, path (Lisi M, Cavanagh P. Curr Biol 25: 2535−2540, 2015). We asked whether memory-guided saccades exhibited the same dissociation from perception. Participants were asked to keep their gaze centered on a fixation dot while the double-drift stimulus moved back and forth on a linear path in the periphery. The offset of the fixation was the go signal to make a saccade to the target. In the visually guided saccade condition, the Gabor kept moving on its trajectory after the go signal but was removed once the saccade began. In the memory conditions, the Gabor disappeared before or at the same time as the go-signal (0- to 1,000-ms delay) and participants made a saccade to its remembered location. The results showed that visually guided saccades again targeted the physical rather than the perceived location. However, memory saccades, even with 0-ms delay, had landing positions shifted toward the perceived location. Our result shows that memory- and visually guided saccades are based on different spatial information.>NEW & NOTEWORTHY We compared the effect of a perceptual illusion on two types of saccades, visually guided vs. memory-guided saccades, and found that whereas visually guided saccades were almost unaffected by the perceptual illusion, memory-guided saccades exhibited a strong effect of the illusion. Our result is the first evidence in the literature to show that visually and memory-guided saccades use different spatial representations.
机译:双重漂移刺激(具有正交内部运动的漂移Gabor)在其物理路径与感知路径之间产生很大的差异。出人意料的是,指向双重漂移刺激的扫视沿着物理路径而不是感知路径着陆(Lisi M,Cavanagh P.Curr Biol 25:2535-2540,2015)。我们询问记忆引导扫视是否表现出与感知相同的分离。要求参与者将视线集中在注视点上,同时双重漂移刺激在外围沿直线路径来回移动。固视的偏移是向目标扫视的行进信号。在视觉引导的扫视条件下,行进信号发出后,Gabor继续沿其轨迹移动,但一旦扫视开始,Gabor便被移走。在记忆条件下,Gabor在发出信号之前或同时消失(延迟为0到1,000毫秒),参与者对找到的位置进行了扫视。结果表明,视觉引导的扫视再次针对物理位置而不是感知位置。但是,即使有0毫秒的延迟,内存扫描也将着陆位置移向了感知位置。我们的结果表明记忆和视觉引导的扫视是基于不同的空间信息。> NEW&NOTEWORTHY 我们比较了视觉幻觉对视觉引导和记忆引导的扫视两种视觉效果的影响,并且发现视觉引导的扫视几乎不受知觉错觉的影响,而记忆引导的扫视则表现出强烈的幻觉效果。我们的结果是文献中显示视觉和记忆引导扫视使用不同空间表示的第一个证据。

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