【2h】

Time course of spatiotopic updating across saccades

机译:跨扫视时空更新的时程

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摘要

Humans move their eyes several times per second, yet we perceive the outside world as continuous despite the sudden disruptions created by each eye movement. To date, the mechanism that the brain employs to achieve visual continuity across eye movements remains unclear. While it has been proposed that the oculomotor system quickly updates and informs the visual system about the upcoming eye movement, behavioral studies investigating the time course of this updating suggest the involvement of a slow mechanism, estimated to take more than 500 ms to operate effectively. This is a surprisingly slow estimate, because both the visual system and the oculomotor system process information faster. If spatiotopic updating is indeed this slow, it cannot contribute to perceptual continuity, because it is outside the temporal regime of typical oculomotor behavior. Here, we argue that the behavioral paradigms that have been used previously are suboptimal to measure the speed of spatiotopic updating. In this study, we used a fast gaze-contingent paradigm, using high phi as a continuous stimulus across eye movements. We observed fast spatiotopic updating within 150 ms after stimulus onset. The results suggest the involvement of a fast updating mechanism that predictively influences visual perception after an eye movement. The temporal characteristics of this mechanism are compatible with the rate at which saccadic eye movements are typically observed in natural viewing.
机译:人类每秒会移动几次眼睛,但是尽管每次眼动会造成突然的干扰,但我们仍将外界视为连续的。迄今为止,大脑用于实现跨眼球运动的视觉连续性的机制仍不清楚。尽管已经提出动眼系统可以快速更新并通知视觉系统即将发生的眼球运动,但是调查这种更新时间过程的行为研究表明,这种慢速机制参与其中,估计需要花费500毫秒以上才能有效运行。这是一个令人惊讶的缓慢估计,因为视觉系统和动眼系统都更快地处理信息。如果时空更新确实如此缓慢,则它不会有助于感知连续性,因为它不在典型动眼行为的时间范围内。在这里,我们认为,以前使用的行为范例在衡量空间更新速度方面不是最佳的。在这项研究中,我们使用了快速凝视或偶然范例,将高phi作为连续的眼动刺激。我们观察到刺激发作后150毫秒内快速的空间变化。结果表明涉及快速更新机制,该机制预测性地影响眼睛运动后的视觉感知。该机制的时间特性与自然观察中通常观察到的眼跳运动的速率兼容。

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