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运动外推的校正机制。

Corrective mechanisms of motion extrapolation.

机构信息

Department of Ophthalmology, and Laboratory of Optometry and Vision Sciences, West China Hospital, Sichuan University, Chengdu, Sichuan, China.

McGill Vision Research Unit, Department of Ophthalmology & Visual Sciences, McGill University, Montreal, Quebec, Canada.

出版信息

J Vis. 2024 Mar 1;24(3):6. doi: 10.1167/jov.24.3.6.

Abstract

Transmission and processing of sensory information in the visual system takes time. For motion perception, our brain can overcome this intrinsic neural delay through extrapolation mechanisms and accurately predict the current position of a continuously moving object. But how does the system behave when the motion abruptly changes and the prediction becomes wrong? Here we address this question by studying the perceived position of a moving object with various abrupt motion changes by human observers. We developed a task in which a bar is monotonously moving horizontally, and then motion suddenly stops, reverses, or disappears-then-reverses around two vertical stationary reference lines. Our results showed that participants overestimated the position of the stopping bar but did not perceive an overshoot in the motion reversal condition. When a temporal gap was added at the reverse point, the perceptual overshoot of the end point scaled with the gap durations. Our model suggests that the overestimation of the object position when it disappears is not linear as a function of its speeds but gradually fades out. These results can thus be reconciled in a single process where there is an interplay of the cortical motion prediction mechanisms and the late sensory transient visual inputs.

摘要

视觉系统中的感觉信息传递和处理需要时间。对于运动感知,我们的大脑可以通过外推机制克服这种内在的神经延迟,准确预测连续移动物体的当前位置。但是,当运动突然改变且预测错误时,系统会如何表现呢?我们通过研究人类观察者在各种突然的运动变化下对移动物体的感知位置来解决这个问题。我们开发了一个任务,其中一个条形物在水平方向上单调移动,然后运动突然停止、反转或消失-然后在两条垂直的固定参考线之间反转。我们的结果表明,参与者高估了停止杆的位置,但在运动反转条件下没有感知到过冲。当在反转点添加时间间隔时,端点的感知过冲与间隔持续时间成比例。我们的模型表明,当物体消失时,其位置的高估不是其速度的线性函数,而是逐渐消失。因此,这些结果可以在一个单一的过程中得到协调,该过程中存在皮质运动预测机制和晚期感觉瞬态视觉输入的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7999/10960225/62bcf6bcfeaa/jovi-24-3-6-f001.jpg

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