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通过对周期性噪声干扰的傅里叶分析揭示视觉搜索过程中注意采样的动态变化

The dynamics of attentional sampling during visual search revealed by Fourier analysis of periodic noise interference.

作者信息

Dugué Laura, Vanrullen Rufin

机构信息

CNRS, Centre de Recherche Cerveau et Cognition, Faculté de Médecine de Purpan, Toulouse, France.

出版信息

J Vis. 2014 Feb 13;14(2):11. doi: 10.1167/14.2.11.

Abstract

What are the temporal dynamics of perceptual sampling during visual search tasks, and how do they differ between a difficult (or inefficient) and an easy (or efficient) task? Does attention focus intermittently on the stimuli, or are the stimuli processed continuously over time? We addressed these questions by way of a new paradigm using periodic fluctuations of stimulus information during a difficult (color-orientation conjunction) and an easy (+ among Ls) search task. On each stimulus, we applied a dynamic visual noise that oscillated at a given frequency (2-20 Hz, 2-Hz steps) and phase (four cardinal phase angles) for 500 ms. We estimated the dynamics of attentional sampling by computing an inverse Fourier transform on subjects' d-primes. In both tasks, the sampling function presented a significant peak at 2 Hz; we showed that this peak could be explained by nonperiodic search strategies such as increased sensitivity to stimulus onset and offset. Specifically in the difficult task, however, a second, higher-frequency peak was observed at 9 to 10 Hz, with a similar phase for all subjects; this isolated frequency component necessarily entails oscillatory attentional dynamics. In a second experiment, we presented difficult search arrays with dynamic noise that was modulated by the previously obtained grand-average attention sampling function or by its converse function (in both cases omitting the 2 Hz component to focus on genuine oscillatory dynamics). We verified that performance was higher in the latter than in the former case, even for subjects who had not participated in the first experiment. This study supports the idea of a periodic sampling of attention during a difficult search task. Although further experiments will be needed to extend these findings to other search tasks, the present report validates the usefulness of this novel paradigm for measuring the temporal dynamics of attention.

摘要

在视觉搜索任务中,知觉采样的时间动态是怎样的?在困难(或低效)任务和简单(或高效)任务之间,它们又有何不同?注意力是间歇性地聚焦于刺激上,还是随着时间对刺激进行连续处理?我们通过一种新范式来解决这些问题,该范式利用了在困难(颜色-方向联合)和简单(“L” 中找 “+”)搜索任务期间刺激信息的周期性波动。在每个刺激上,我们施加了一种动态视觉噪声,该噪声以给定频率(2 - 20 Hz,以2 Hz步长)和相位(四个基本相位角)振荡500毫秒。我们通过对受试者的d-prime值进行逆傅里叶变换来估计注意力采样的动态。在这两个任务中,采样函数在2 Hz处都呈现出一个显著的峰值;我们表明,这个峰值可以用非周期性搜索策略来解释,比如对刺激开始和结束的敏感性增加。然而,具体在困难任务中,在9到10 Hz处观察到了第二个更高频率的峰值,所有受试者的该峰值相位相似;这个孤立的频率成分必然意味着振荡性的注意力动态。在第二个实验中,我们向困难搜索阵列呈现由先前获得的总体平均注意力采样函数或其反函数调制的动态噪声(在两种情况下都省略2 Hz成分以专注于真正的振荡动态)。我们证实,即使对于未参与第一个实验的受试者,后一种情况下的表现也比前一种情况更高。本研究支持了在困难搜索任务期间注意力进行周期性采样的观点。尽管需要进一步的实验将这些发现扩展到其他搜索任务,但本报告验证了这种新颖范式对于测量注意力时间动态的有用性。

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