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首页> 外文期刊>Journal of vision >Predictive coding of visual motion in both monocular and binocular human visual processing
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Predictive coding of visual motion in both monocular and binocular human visual processing

机译:单眼和双眼人类视觉处理中视觉运动的预测编码

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Neural processing of sensory input in the brain takes time, and for that reason our awareness of visual events lags behind their actual occurrence. One way the brain might compensate to minimize the impact of the resulting delays is through extrapolation. Extrapolation mechanisms have been argued to underlie perceptual illusions in which moving and static stimuli are mislocalised relative to one another (such as the flash-lag and related effects). However, where in the visual hierarchy such extrapolation processes take place remains unknown. Here, we address this question by identifying monocular and binocular contributions to the flash-grab illusion. In this illusion, a brief target is flashed on a moving background that reverses direction. As a result, the perceived position of the target is shifted in the direction of the reversal. We show that the illusion is attenuated, but not eliminated, when the motion reversal and the target are presented dichoptically to separate eyes. This reveals extrapolation mechanisms at both monocular and binocular processing stages contribute to the illusion. We interpret the results in a hierarchical predictive coding framework, and argue that prediction errors in this framework manifest directly as perceptual illusions.
机译:对大脑中的感觉输入进行神经处理需要时间,因此,我们对视觉事件的意识落后于其实际发生的时间。大脑可能进行补偿以最大程度地减少延迟产生的影响的一种方法是通过外推法。有人认为外推机制是感知错觉的基础,在这种错觉中,运动的刺激和静态的刺激相对于彼此错位(例如,闪光滞后和相关效应)。但是,在视觉层次结构中发生这种推断过程的地方仍然未知。在这里,我们通过确定单眼和双眼对闪光捕捉错觉的贡献来解决这个问题。在这种错觉中,短暂的目标在反向的运动背景上闪烁。结果,目标的感知位置在反转方向上移动。我们显示,当运动反转和目标被二分法地呈现给分开的眼睛时,幻觉会被衰减,但不会消除。这揭示了在单眼和双眼加工阶段的外推机制都对错觉有所贡献。我们在分层的预测编码框架中解释结果,并认为该框架中的预测错误直接表现为感知幻觉。

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