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时间和空间频率对感知偏差的影响:半球间竞争的证据。

Influences of time and spatial frequency on the perceptual bias: evidence for competition between hemispheres.

作者信息

Niemeier Matthias, Stojanoski Boge, Greco Alana L

机构信息

Centre for Computational Cognitive Neuroscience, Department of Life Sciences, Canada.

出版信息

Neuropsychologia. 2007 Mar 14;45(5):1029-40. doi: 10.1016/j.neuropsychologia.2006.09.006. Epub 2006 Oct 17.

Abstract

Perceptual biases for various visual features, such as size, luminance and numerosity, have been implicated with a right-hemisphere dominance in spatial and attentional functions and/or an asymmetrical competition between the two hemispheres. However, the mechanisms underlying these biases are poorly understood. For example, it has been largely ignored that processing of those features is closely interconnected with spatial frequency filters. To probe the influence of spatial frequencies on perceptual biases, here we used a new gratingscales task in neurologically healthy participants. We found that perceptual bias was strongly influenced within a bandwidth of spatial frequencies and that this bias correlated with a bias for luminance depending on presentation time. Furthermore, our participants, divided into two subgroups of perceptually "sensitive" and "insensitive" performers, showed considerably different, presentation time-dependent patterns of perceptual bias. While both groups were biased to the left, insensitive performers more than sensitive performers, these biases varied in a mirror-symmetric manner such that one group showed peaks of bias at times when the other group showed minima and vice versa. Our data suggest that perceptual bias results from an interhemispheric competition within a right-dominant system responsive to spatial frequencies, luminance and perhaps other magnitudes including abstract ones.

摘要

对于各种视觉特征(如大小、亮度和数量)的感知偏差,与右半球在空间和注意力功能方面的优势以及/或者两个半球之间的不对称竞争有关。然而,这些偏差背后的机制却知之甚少。例如,很大程度上被忽视的是,这些特征的处理与空间频率滤波器紧密相连。为了探究空间频率对感知偏差的影响,我们在此对神经功能正常的参与者使用了一种新的光栅尺度任务。我们发现,感知偏差在空间频率带宽内受到强烈影响,并且这种偏差根据呈现时间与亮度偏差相关。此外,我们的参与者被分为感知上“敏感”和“不敏感”的两个亚组,他们表现出明显不同的、依赖于呈现时间的感知偏差模式。虽然两组都向左有偏差,但不敏感的参与者比敏感的参与者偏差更大,这些偏差以镜像对称的方式变化,即一组在另一组显示最小值的时间出现偏差峰值,反之亦然。我们的数据表明,感知偏差是由一个对空间频率、亮度以及可能包括抽象量在内的其他量有反应的右半球主导系统内的半球间竞争导致的。

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