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时空集合平均估计涉及的感知和决策机制。

Perception and decision mechanisms involved in average estimation of spatiotemporal ensembles.

机构信息

Department of Life Sciences, The University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo, 153-8902, Japan.

Department of Integrated Sciences, The University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo, 153-8902, Japan.

出版信息

Sci Rep. 2020 Jan 28;10(1):1318. doi: 10.1038/s41598-020-58112-5.

Abstract

A number of studies on texture and ensemble perception have shown that humans can immediately estimate the average of spatially distributed visual information. The present study characterized mechanisms involved in estimating averages for information distributed over both space and time. Observers viewed a rapid sequence of texture patterns in which elements' orientation were determined by dynamic Gaussian noise with variable spatial and temporal standard deviations (SDs). We found that discrimination thresholds increased beyond a certain spatial SD if temporal SD was small, but if temporal SD was large, thresholds remained nearly constant regardless of spatial SD. These data are at odds with predictions that threshold is uniquely determined by spatiotemporal SD. Moreover, a reverse correlation analysis revealed that observers judged the spatiotemporal average orientation largely depending on the spatial average orientation over the last few frames of the texture sequence - a recency effect widely observed in studies of perceptual decision making. Results are consistent with the notion that the visual system rapidly computes spatial ensembles and adaptively accumulates information over time to make a decision on spatiotemporal average. A simple computational model based on this notion successfully replicated observed data.

摘要

许多关于纹理和整体感知的研究表明,人类可以立即估计空间分布视觉信息的平均值。本研究描述了用于估计空间和时间上分布的信息平均值的机制。观察者观看了一系列快速变化的纹理图案,其中元素的方向由具有可变空间和时间标准偏差(SD)的动态高斯噪声决定。我们发现,如果时间 SD 较小,则在某个空间 SD 之后,辨别阈值会增加,但如果时间 SD 较大,则无论空间 SD 如何,阈值几乎保持不变。这些数据与阈值仅由时空 SD 决定的预测不一致。此外,反向相关分析表明,观察者判断时空平均方向主要取决于纹理序列最后几帧的空间平均方向 - 在感知决策研究中广泛观察到的近因效应。结果与视觉系统快速计算空间整体并随时间自适应地积累信息以对时空平均值做出决策的观点一致。基于该观点的一个简单计算模型成功地复制了观察到的数据。

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