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相对空间频率处理驱动意识觉知中的半球不对称性。

Relative Spatial Frequency Processing Drives Hemispheric Asymmetry in Conscious Awareness.

作者信息

Piazza Elise A, Silver Michael A

机构信息

Princeton Neuroscience Institute, Princeton University, PrincetonNJ, USA.

Helen Wills Neuroscience Institute, University of California, Berkeley, BerkeleyCA, USA.

出版信息

Front Psychol. 2017 Apr 19;8:559. doi: 10.3389/fpsyg.2017.00559. eCollection 2017.

Abstract

Visual stimuli with different spatial frequencies (SFs) are processed asymmetrically in the two cerebral hemispheres. Specifically, low SFs are processed relatively more efficiently in the right hemisphere than the left hemisphere, whereas high SFs show the opposite pattern. In this study, we ask whether these differences between the two hemispheres reflect a low-level division that is based on absolute SF values or a flexible comparison of the SFs in the visual environment at any given time. In a recent study, we showed that conscious awareness of SF information (i.e., visual perceptual selection from multiple SFs simultaneously present in the environment) differs between the two hemispheres. Building upon that result, here we employed binocular rivalry to test whether this hemispheric asymmetry is due to absolute or relative SF processing. In each trial, participants viewed a pair of rivalrous orthogonal gratings of different SFs, presented either to the left or right of central fixation, and continuously reported which grating they perceived. We found that the hemispheric asymmetry in perception is significantly influenced by relative processing of the SFs of the simultaneously presented stimuli. For example, when a medium SF grating and a higher SF grating were presented as a rivalry pair, subjects were more likely to report that they initially perceived the medium SF grating when the rivalry pair was presented in the left visual hemifield (right hemisphere), compared to the right hemifield. However, this same medium SF grating, when it was paired in rivalry with a lower SF grating, was more likely to be perceptually selected when it was in the right visual hemifield (left hemisphere). Thus, the visual system's classification of a given SF as "low" or "high" (and therefore, which hemisphere preferentially processes that SF) depends on the other SFs that are present, demonstrating that relative SF processing contributes to hemispheric differences in visual perceptual selection.

摘要

具有不同空间频率(SFs)的视觉刺激在两个大脑半球中被不对称地处理。具体而言,低空间频率在右半球比左半球处理得相对更高效,而高空间频率则呈现相反的模式。在本研究中,我们探究这两个半球之间的差异是反映基于绝对空间频率值的低层次划分,还是在任何给定时间对视觉环境中空间频率的灵活比较。在最近的一项研究中,我们表明空间频率信息的意识觉知(即从环境中同时呈现的多个空间频率中进行视觉感知选择)在两个半球之间存在差异。基于该结果,在此我们采用双眼竞争来测试这种半球不对称是否归因于绝对或相对空间频率处理。在每个试验中,参与者观看一对具有不同空间频率的竞争正交光栅,它们呈现于中央注视点的左侧或右侧,并持续报告他们所感知到的光栅。我们发现,感知中的半球不对称受到同时呈现刺激的空间频率相对处理的显著影响。例如,当一个中等空间频率光栅和一个更高空间频率光栅作为竞争对呈现时,与右半视野相比,当竞争对呈现于左视觉半视野(右半球)时,受试者更有可能报告他们最初感知到的是中等空间频率光栅。然而,当这个相同的中等空间频率光栅与一个更低空间频率光栅竞争配对时,当它处于右视觉半视野(左半球)时,更有可能在感知上被选择。因此,视觉系统将给定空间频率分类为“低”或“高”(进而哪个半球优先处理该空间频率)取决于所呈现的其他空间频率,这表明相对空间频率处理导致了视觉感知选择中的半球差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7b8/5395634/f2386d264a34/fpsyg-08-00559-g001.jpg

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