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纹外神经对对称性反应的缩放比例。

Scaling of the extrastriate neural response to symmetry.

作者信息

Palumbo Letizia, Bertamini Marco, Makin Alexis

机构信息

Department of Psychology, Liverpool Hope University, UK; Department of Psychological Sciences, University of Liverpool, UK.

Department of Psychological Sciences, University of Liverpool, UK.

出版信息

Vision Res. 2015 Dec;117:1-8. doi: 10.1016/j.visres.2015.10.002. Epub 2015 Nov 7.

Abstract

Neuroimaging work has shown that visual symmetry activates extrastriate brain areas, most consistently the lateral occipital complex (LOC). LOC activation increases with proportion of symmetrical dots (pSymm) in a degraded display. In the current work, we recorded a posterior ERP called the sustained posterior negativity (SPN), which is relatively negative for symmetrical compared to random patterns. We predicted that SPN would also scale with pSymm, because it is probably generated by the LOC. Twenty-four participants viewed dot patterns with different levels of regularity: 0% regularity (full random configuration) 20%, 40%, 60%, 80%, and 100% (full reflection symmetry). Participants judged if the pattern contained "some regularity" or "no regularity". As expected, the SPN amplitude increased with pSymm, while the latency and duration was the same in all conditions. The SPN was independent of the participant's decision, and it was present on some trials where people reported 'no-regularity'. We conclude that the SPN is generated at an intermediate stage of visual processing, probably in the LOC, where perceptual goodness is represented. This comes after initial visual analysis, but before subsequent decision stages, which apply a threshold to the analog LOC response.

摘要

神经成像研究表明,视觉对称性会激活纹外脑区,其中最一致的是枕叶外侧复合体(LOC)。在退化显示中,LOC的激活会随着对称点的比例(pSymm)增加而增强。在当前研究中,我们记录了一种称为持续性后负波(SPN)的后部事件相关电位,与随机图案相比,该电位对对称图案相对呈负性。我们预测SPN也会随着pSymm变化,因为它可能由LOC产生。24名参与者观看了具有不同规则程度的点图案:规则度为0%(完全随机配置)、20%、40%、60%、80%和100%(完全反射对称)。参与者判断图案是否包含“某种规则性”或“无规则性”。正如预期的那样,SPN的波幅随着pSymm增加,而潜伏期和持续时间在所有条件下相同。SPN与参与者的判断无关,并且在一些参与者报告“无规则性”的试验中也会出现。我们得出结论,SPN是在视觉处理的中间阶段产生的,可能在LOC,在那里表征了感知质量。这发生在初始视觉分析之后,但在随后的决策阶段之前,决策阶段会对模拟的LOC反应应用一个阈值。

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